run_metadata
8,968 rows where devstage_curation_coarse = "Embryo" and experiment.library_layout = "SINGLE"
This data as json, CSV (advanced)
| Link | rowid ▼ | run.accession | experiment.accession | sample.accession | study.accession | bioproject | study.title | study.alias | study.type | study.abstract | study.attributes | study.PMIDs | sample.description | sample.title | sample.alias | sample.centername | sample.attributes | GEOsample.title | GEOsample.dataprocessing | GEOsample.source | GEOsample.treatmentprotocol | GEOsample.extractprotocol | GEOsample.growthprotocol | GEOsample.characteristics | GEOsample.accession | experiment.title | experiment.alias | experiment.library_name | experiment.design_description | experiment.library_construction_protocol | experiment.attributes | experiment.library_strategy | experiment.library_source | experiment.library_selection | experiment.library_layout | experiment.platform | experiment.instrument_model | experiment.spot_descriptor | experiment.study_ref | run.title | run.attributes | run.filename | run.semantic_name | run.total_bases | run.total_spots | run.alias | run.read_lengths | run.base_counts | run.r1_length | run.r2_length | run.r3_length | run.r4_length | run.Acount | run.Ccount | run.Gcount | run.Tcount | run.Ncount | run.experiment | run.pool_member | submission.accession | submission.srasource | submission.bioprojectsource | seqdetective.n_mates | seqdetective.mapping_rate.mate1 | seqdetective.mapping_rate.mate2 | seqdetective.nofeature_rate.mate1 | seqdetective.nofeature_rate.mate2 | seqdetective.sparsity.mate1 | seqdetective.sparsity.mate2 | seqdetective.pos_strand_rate.mate1 | seqdetective.pos_strand_rate.mate2 | seqdetective.readlen.mate1 | seqdetective.readlen.mate2 | seqdetective.judgement.mate1 | seqdetective.judgement.mate2 | seqdetective.judgement.reason | platform_family | instrument_generation | read_bias | selection_class | prep_kit | sc_or_bulk | tech_class | technology | tech_variant | submission.bioprojectsource.country | earliest_date | devstage_curation | devstage_curation_coarse | tissue_curation | tissue_curation_coarse |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 60 | 60 | DRR032764 | DRX029570 | DRS049969 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr shield 2 | SAMD00028161 | sample name:Dr shield 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:shield|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028161 | DRX029570 | Dr shield 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028161 | 3644397900.0 | 36443979.0 | DRR032764 | 0:100 1:0 | A:986071173;C:842367218;G:837686080;T:978236607;N:36822 | 100 | 0 | 986071173 | 842367218 | 837686080 | 978236607 | 36822 | DRX029570 | DRS049969 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92419 | 0.08269 | 0.75558 | 0.47863 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 61 | 61 | DRR032763 | DRX029569 | DRS049968 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr shield 1 | SAMD00028160 | sample name:Dr shield 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:shield|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028160 | DRX029569 | Dr shield 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028160 | 3834622000.0 | 38346220.0 | DRR032763 | 0:100 1:0 | A:1043352851;C:880011834;G:876775415;T:1034444253;N:37647 | 100 | 0 | 1043352851 | 880011834 | 876775415 | 1034444253 | 37647 | DRX029569 | DRS049968 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92305 | 0.09126 | 0.75481 | 0.47587 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 62 | 62 | DRR032762 | DRX029568 | DRS049967 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr prime5 6 3 | SAMD00028159 | sample name:Dr prime5 6 3|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:prime5 6|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028159 | DRX029568 | Dr prime5 6 3 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028159 | 3903332800.0 | 39033328.0 | DRR032762 | 0:100 1:0 | A:1050045822;C:908538410;G:900588661;T:1044116537;N:43370 | 100 | 0 | 1050045822 | 908538410 | 900588661 | 1044116537 | 43370 | DRX029568 | DRS049967 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92761 | 0.07976 | 0.69126 | 0.46568 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Undetermined | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 63 | 63 | DRR032761 | DRX029567 | DRS049966 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr prime5 6 2 | SAMD00028158 | sample name:Dr prime5 6 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:prime5 6|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028158 | DRX029567 | Dr prime5 6 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028158 | 3678549700.0 | 36785497.0 | DRR032761 | 0:100 1:0 | A:986526644;C:857762765;G:853417738;T:980801764;N:40789 | 100 | 0 | 986526644 | 857762765 | 853417738 | 980801764 | 40789 | DRX029567 | DRS049966 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92689 | 0.07872 | 0.6928 | 0.46577 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Undetermined | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 64 | 64 | DRR032760 | DRX029566 | DRS049965 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr prime5 6 1 | SAMD00028157 | sample name:Dr prime5 6 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:prime5 6|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028157 | DRX029566 | Dr prime5 6 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028157 | 3863129500.0 | 38631295.0 | DRR032760 | 0:100 1:0 | A:1035240477;C:901625010;G:895370149;T:1030851937;N:41927 | 100 | 0 | 1035240477 | 901625010 | 895370149 | 1030851937 | 41927 | DRX029566 | DRS049965 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92337 | 0.07522 | 0.69315 | 0.46516 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Undetermined | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 65 | 65 | DRR032759 | DRX029565 | DRS049964 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr prime25 2 | SAMD00028156 | sample name:Dr prime25 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:prime25|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028156 | DRX029565 | Dr prime25 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028156 | 3750136100.0 | 37501361.0 | DRR032759 | 0:100 1:0 | A:1013528040;C:866734984;G:862431819;T:1007403208;N:38049 | 100 | 0 | 1013528040 | 866734984 | 862431819 | 1007403208 | 38049 | DRX029565 | DRS049964 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92019 | 0.09079 | 0.68304 | 0.47083 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Undetermined | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 66 | 66 | DRR032758 | DRX029564 | DRS049963 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr prime25 1 | SAMD00028155 | sample name:Dr prime25 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:prime25|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028155 | DRX029564 | Dr prime25 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028155 | 3544862700.0 | 35448627.0 | DRR032758 | 0:100 1:0 | A:952135895;C:825841753;G:821757889;T:945087927;N:39236 | 100 | 0 | 952135895 | 825841753 | 821757889 | 945087927 | 39236 | DRX029564 | DRS049963 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92229 | 0.08344 | 0.68525 | 0.466 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Undetermined | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 67 | 67 | DRR032757 | DRX029563 | DRS049962 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 97 individuals | Dr bud 2 | SAMD00028154 | sample name:Dr bud 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:bud|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028154 | DRX029563 | Dr bud 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028154 | 4104778200.0 | 41047782.0 | DRR032757 | 0:100 1:0 | A:1116316188;C:944738800;G:936257056;T:1107423486;N:42670 | 100 | 0 | 1116316188 | 944738800 | 936257056 | 1107423486 | 42670 | DRX029563 | DRS049962 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92945 | 0.10493 | 0.73407 | 0.47824 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Undetermined | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 68 | 68 | DRR032756 | DRX029562 | DRS049961 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr bud 1 | SAMD00028153 | sample name:Dr bud 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:bud|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028153 | DRX029562 | Dr bud 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028153 | 4540291000.0 | 45402910.0 | DRR032756 | 0:100 1:0 | A:1237914068;C:1042346110;G:1033172731;T:1226799791;N:58300 | 100 | 0 | 1237914068 | 1042346110 | 1033172731 | 1226799791 | 58300 | DRX029562 | DRS049961 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92628 | 0.10478 | 0.7391 | 0.46461 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Undetermined | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 69 | 69 | DRR032755 | DRX029561 | DRS049960 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr 90epiboly 2 | SAMD00028152 | sample name:Dr 90epiboly 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:90epiboly|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028152 | DRX029561 | Dr 90epiboly 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028152 | 3572358600.0 | 35723586.0 | DRR032755 | 0:100 1:0 | A:971653450;C:821326559;G:816855636;T:962477457;N:45498 | 100 | 0 | 971653450 | 821326559 | 816855636 | 962477457 | 45498 | DRX029561 | DRS049960 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92485 | 0.10642 | 0.74213 | 0.47012 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 70 | 70 | DRR032754 | DRX029560 | DRS049959 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr 90epiboly 1 | SAMD00028151 | sample name:Dr 90epiboly 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:90epiboly|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028151 | DRX029560 | Dr 90epiboly 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028151 | 3423980500.0 | 34239805.0 | DRR032754 | 0:100 1:0 | A:933088185;C:785251613;G:780911148;T:924686406;N:43148 | 100 | 0 | 933088185 | 785251613 | 780911148 | 924686406 | 43148 | DRX029560 | DRS049959 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92436 | 0.10881 | 0.74255 | 0.47068 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 71 | 71 | DRR032753 | DRX029559 | DRS049958 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 114 individuals | Dr 8cell 2 | SAMD00028150 | sample name:Dr 8cell 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:8cell|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028150 | DRX029559 | Dr 8cell 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028150 | 3708921900.0 | 37089219.0 | DRR032753 | 0:100 1:0 | A:985502141;C:874161613;G:869551685;T:979663686;N:42775 | 100 | 0 | 985502141 | 874161613 | 869551685 | 979663686 | 42775 | DRX029559 | DRS049958 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.93329 | 0.02366 | 0.78896 | 0.47447 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Cleavage | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 72 | 72 | DRR032752 | DRX029558 | DRS049957 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 96 individuals | Dr 8cell 1 | SAMD00028149 | sample name:Dr 8cell 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:8cell|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028149 | DRX029558 | Dr 8cell 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028149 | 3666991200.0 | 36669912.0 | DRR032752 | 0:100 1:0 | A:976118513;C:862559696;G:858017821;T:970254302;N:40868 | 100 | 0 | 976118513 | 862559696 | 858017821 | 970254302 | 40868 | DRX029558 | DRS049957 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.934 | 0.02403 | 0.78877 | 0.46902 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Cleavage | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 73 | 73 | DRR032751 | DRX029557 | DRS049956 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr 75epiboly 2 | SAMD00028148 | sample name:Dr 75epiboly 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:75epiboly|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028148 | DRX029557 | Dr 75epiboly 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028148 | 3252021500.0 | 32520215.0 | DRR032751 | 0:100 1:0 | A:885527595;C:746750899;G:742907892;T:876794123;N:40991 | 100 | 0 | 885527595 | 746750899 | 742907892 | 876794123 | 40991 | DRX029557 | DRS049956 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92594 | 0.10181 | 0.74862 | 0.47789 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 74 | 74 | DRR032750 | DRX029556 | DRS049955 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr 75epiboly 1 | SAMD00028147 | sample name:Dr 75epiboly 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:75epiboly|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028147 | DRX029556 | Dr 75epiboly 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028147 | 3785053700.0 | 37850537.0 | DRR032750 | 0:100 1:0 | A:1029014798;C:870946157;G:867537069;T:1017508684;N:46992 | 100 | 0 | 1029014798 | 870946157 | 867537069 | 1017508684 | 46992 | DRX029556 | DRS049955 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92346 | 0.10046 | 0.74921 | 0.47295 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Gastrula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 77 | 77 | DRR032747 | DRX029553 | DRS049952 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr 6somite 2 | SAMD00028144 | sample name:Dr 6somite 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:6somite|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028144 | DRX029553 | Dr 6somite 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028144 | 3704431000.0 | 37044310.0 | DRR032747 | 0:100 1:0 | A:1001844161;C:856702913;G:850695568;T:995148798;N:39560 | 100 | 0 | 1001844161 | 856702913 | 850695568 | 995148798 | 39560 | DRX029553 | DRS049952 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92633 | 0.09211 | 0.72107 | 0.47195 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Segmentation | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 78 | 78 | DRR032746 | DRX029552 | DRS049951 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr 6somite 1 | SAMD00028143 | sample name:Dr 6somite 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:6somite|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028143 | DRX029552 | Dr 6somite 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028143 | 3529311900.0 | 35293119.0 | DRR032746 | 0:100 1:0 | A:953957996;C:816824469;G:811403696;T:947089530;N:36209 | 100 | 0 | 953957996 | 816824469 | 811403696 | 947089530 | 36209 | DRX029552 | DRS049951 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92437 | 0.09257 | 0.72113 | 0.47004 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Segmentation | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 79 | 79 | DRR032745 | DRX029551 | DRS049950 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr 60h 2 | SAMD00028142 | sample name:Dr 60h 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:60h Pec fin|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028142 | DRX029551 | Dr 60h 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028142 | 3875337000.0 | 38753370.0 | DRR032745 | 0:100 1:0 | A:1042558903;C:899892111;G:896867583;T:1035981420;N:36983 | 100 | 0 | 1042558903 | 899892111 | 896867583 | 1035981420 | 36983 | DRX029551 | DRS049950 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.91891 | 0.09445 | 0.66156 | 0.45564 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Hatching | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 80 | 80 | DRR032744 | DRX029550 | DRS049949 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr 60h 1 | SAMD00028141 | sample name:Dr 60h 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:60h Pec fin|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028141 | DRX029550 | Dr 60h 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028141 | 3538468200.0 | 35384682.0 | DRR032744 | 0:100 1:0 | A:960664313;C:812459988;G:809014008;T:956295205;N:34686 | 100 | 0 | 960664313 | 812459988 | 809014008 | 956295205 | 34686 | DRX029550 | DRS049949 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.91388 | 0.10346 | 0.66076 | 0.45203 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Hatching | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 84 | 84 | DRR032740 | DRX029546 | DRS049945 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr 48h 2 | SAMD00028137 | sample name:Dr 48h 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:48h Long pec|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028137 | DRX029546 | Dr 48h 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028137 | 3702804700.0 | 37028047.0 | DRR032740 | 0:100 1:0 | A:993931475;C:862403562;G:857808891;T:988623734;N:37038 | 100 | 0 | 993931475 | 862403562 | 857808891 | 988623734 | 37038 | DRX029546 | DRS049945 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92508 | 0.08526 | 0.68349 | 0.45769 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Hatching | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 85 | 85 | DRR032739 | DRX029545 | DRS049944 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 50 individuals | Dr 48h 1 | SAMD00028136 | sample name:Dr 48h 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:48h Long pec|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028136 | DRX029545 | Dr 48h 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028136 | 3980240400.0 | 39802404.0 | DRR032739 | 0:100 1:0 | A:1070497788;C:925240883;G:920038728;T:1064422474;N:40527 | 100 | 0 | 1070497788 | 925240883 | 920038728 | 1064422474 | 40527 | DRX029545 | DRS049944 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92349 | 0.08681 | 0.67874 | 0.46565 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Hatching | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 86 | 86 | DRR032738 | DRX029544 | DRS049943 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr 32cell 2 | SAMD00028135 | sample name:Dr 32cell 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:32cell|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028135 | DRX029544 | Dr 32cell 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028135 | 3678713000.0 | 36787130.0 | DRR032738 | 0:100 1:0 | A:981005900;C:863203049;G:859660640;T:974807835;N:35576 | 100 | 0 | 981005900 | 863203049 | 859660640 | 974807835 | 35576 | DRX029544 | DRS049943 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.93302 | 0.02468 | 0.77441 | 0.47485 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Cleavage | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 87 | 87 | DRR032737 | DRX029543 | DRS049942 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 95 individuals | Dr 32cell 1 | SAMD00028134 | sample name:Dr 32cell 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:32cell|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028134 | DRX029543 | Dr 32cell 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028134 | 3870906500.0 | 38709065.0 | DRR032737 | 0:100 1:0 | A:1030407751;C:909948718;G:905608620;T:1024897443;N:43968 | 100 | 0 | 1030407751 | 909948718 | 905608620 | 1024897443 | 43968 | DRX029543 | DRS049942 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.93364 | 0.02484 | 0.77307 | 0.47588 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Cleavage | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 88 | 88 | DRR032736 | DRX029542 | DRS049941 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr zfs:0000015 2 | SAMD00028133 | sample name:Dr zfs:0000015 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:zfs:0000015|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028133 | DRX029542 | Dr zfs:0000015 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028133 | 3129028500.0 | 31290285.0 | DRR032736 | 0:100 1:0 | A:849515903;C:721550282;G:717777586;T:840154982;N:29747 | 100 | 0 | 849515903 | 721550282 | 717777586 | 840154982 | 29747 | DRX029542 | DRS049941 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92724 | 0.07971 | 0.74657 | 0.47796 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 89 | 89 | DRR032735 | DRX029541 | DRS049940 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 100 individuals | Dr zfs:0000015 1 | SAMD00028132 | sample name:Dr zfs:0000015 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:zfs:0000015|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028132 | DRX029541 | Dr zfs:0000015 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028132 | 4310219700.0 | 43102197.0 | DRR032735 | 0:100 1:0 | A:1169701983;C:993241399;G:986263558;T:1160969083;N:43677 | 100 | 0 | 1169701983 | 993241399 | 986263558 | 1160969083 | 43677 | DRX029541 | DRS049940 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92609 | 0.07773 | 0.74349 | 0.47849 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Blastula | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 90 | 90 | DRR032734 | DRX029540 | DRS049939 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 107 individuals | Dr 2cell 2 | SAMD00028131 | sample name:Dr 2cell 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:2cell|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028131 | DRX029540 | Dr 2cell 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028131 | 3687517000.0 | 36875170.0 | DRR032734 | 0:100 1:0 | A:975272080;C:873518282;G:869743434;T:968941851;N:41353 | 100 | 0 | 975272080 | 873518282 | 869743434 | 968941851 | 41353 | DRX029540 | DRS049939 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.93204 | 0.02088 | 0.81639 | 0.47553 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Cleavage | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 91 | 91 | DRR032733 | DRX029539 | DRS049938 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 108 individuals | Dr 2cell 1 | SAMD00028130 | sample name:Dr 2cell 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:2cell|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028130 | DRX029539 | Dr 2cell 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028130 | 4156651100.0 | 41566511.0 | DRR032733 | 0:100 1:0 | A:1099943617;C:985498415;G:978884426;T:1092278665;N:45977 | 100 | 0 | 1099943617 | 985498415 | 978884426 | 1092278665 | 45977 | DRX029539 | DRS049938 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.93452 | 0.02198 | 0.81197 | 0.47342 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Cleavage | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 92 | 92 | DRR032732 | DRX029538 | DRS049937 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 80 individuals | Dr 14somite 3 | SAMD00028129 | sample name:Dr 14somite 3|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:14somite|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028129 | DRX029538 | Dr 14somite 3 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028129 | 3734610500.0 | 37346105.0 | DRR032732 | 0:100 1:0 | A:1009418541;C:863710067;G:858061383;T:1003378800;N:41709 | 100 | 0 | 1009418541 | 863710067 | 858061383 | 1003378800 | 41709 | DRX029538 | DRS049937 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92401 | 0.08815 | 0.70816 | 0.46602 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Segmentation | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 93 | 93 | DRR032731 | DRX029537 | DRS049936 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 80 individuals | Dr 14somite 2 | SAMD00028128 | sample name:Dr 14somite 2|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:14somite|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028128 | DRX029537 | Dr 14somite 2 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028128 | 3715174200.0 | 37151742.0 | DRR032731 | 0:100 1:0 | A:1000703508;C:862290629;G:858173468;T:993968396;N:38199 | 100 | 0 | 1000703508 | 862290629 | 858173468 | 993968396 | 38199 | DRX029537 | DRS049936 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92491 | 0.0819 | 0.71068 | 0.46957 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Segmentation | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 94 | 94 | DRR032730 | DRX029536 | DRS049935 | DRP003810 | PRJDB3785 | EXPANDE project | DRP003810 | Other | EXPression AloNg Development and Evolution EXPANDE project aims to identify gene expression profiles expanded during embryogenesis and evolution. In brief taking advantages of Illumina sequencing RNAseq profiles of early to late embryos of 8 chordate species were identified with biological replicates two or more biological replicates. | mRNA extracted from pooled embryos of 80 individuals | Dr 14somite 1 | SAMD00028127 | sample name:Dr 14somite 1|strain:Riken WT Wild Type|tissue type:whole embryo|dev stage:14somite|genotype:wild type|phenotype:wild type|sex:male female and mixed | Illumina HiSeq 2000 sequencing of SAMD00028127 | DRX029536 | Dr 14somite 1 | 1 | Total RNA QIAGEN RNeasy followed by TruSeq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | Illumina HiSeq 2000 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>100</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP003810 | Illumina HiSeq 2000 sequencing of SAMD00028127 | 3744386000.0 | 37443860.0 | DRR032730 | 0:100 1:0 | A:1014537326;C:864070910;G:859190201;T:1006549502;N:38061 | 100 | 0 | 1014537326 | 864070910 | 859190201 | 1006549502 | 38061 | DRX029536 | DRS049935 | DRA003460 | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | UT-BS|Lab for embryology, Department of Biological Sciences, University of Tokyo | 1 | 0.92378 | 0.08957 | 0.7068 | 0.47493 | 100 | B | usable mapping rate | illumina | hiseq_era | unknown | other | trueseq | bulk | unknown | unknown | Japan | 2017-09-20 | Segmentation | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||
| 175 | 175 | DRR084197 | DRX078028 | DRS086522 | DRP004758 | PRJDB5490 | Fine selection of up regulated genes duirng ovulation by in vivo induction of oocyte maturation and ovulation in zebrafish | DRP004758 | Other | Two essential processes oocyte maturation and ovulation before oocytes become fertilizable that are independently induced but co operatively proceeded at the final step in oogenesis. Eventhough these two processes are induced by same maturation inducing steroid 17 20 beta dihydroxy 4 pregnen 3 one 17 20 beta DHP in teleost the receptor for each pathway is suggested to be different and thus signal transduction pathways are different. While much progresses achieved on the molecular mechanisms for induction of oocyte maturation the mechanisms to induce ovulation is under elucidation. Previously we established the procedure that can make it possible to prepare the ovarian tissue which contains oocyte maturation induced oocytes in vivo. In the same way ovulation can be induced in alive zebrafish. Thus it became possible to select the genes up regulated according to ovulation by compare the gene expression between maturation inducing genes in matured oocytes and both maturation and ovulation inducing genes in ovulated eggs. In vivo bioassay has been applied to prepare maturated and ovulated ovarian samples. Specifically up regulated genes to induce ovulation will be selected by RNA seq analysis. The mRNA abundance of highly up regulated genes will be confirmed by q PCR analysis. By this project ovulation inducing genes will be selected and its roles in induction of ovulation will be addressed in the future. | natural paring early sample | zebrafish ovary isolated from adult fish natural paring oocyte maturation. [RNAseq replicate2] | SAMD00073604 | sample name:M 4th|replicate:biological replicate 2 | Illumina HiSeq 2500 sequencing of SAMD00073604 | DRX078028 | zebrafish ovary isolated from adult fish natural paring oocyte maturation. [RNAseq replicate2] | 1 | Agilent SureSelect Strand Specific RNA Prep Kit | RNA-Seq | TRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>36</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP004758 | Illumina HiSeq 2500 sequencing of SAMD00073604 | 1389837888.0 | 38606608.0 | DRR084197 | 0:36 | A:320671418;C:336948866;G:347550258;T:381720581;N:2946765 | 36 | 320671418 | 336948866 | 347550258 | 381720581 | 2946765 | DRX078028 | DRS086522 | DRA005484 | SHIZUOKA|Shizuoka University | Shizuoka University | 1 | 0.89763 | 0.02235 | 0.76445 | 0.46381 | 36 | B | usable mapping rate | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | Japan | 2019-01-23 | Zygote | Embryo | Multi-tissue | Multi-system | |||||||||||||||||||||||||
| 181 | 181 | DRR084191 | DRX078022 | DRS086516 | DRP004758 | PRJDB5490 | Fine selection of up regulated genes duirng ovulation by in vivo induction of oocyte maturation and ovulation in zebrafish | DRP004758 | Other | Two essential processes oocyte maturation and ovulation before oocytes become fertilizable that are independently induced but co operatively proceeded at the final step in oogenesis. Eventhough these two processes are induced by same maturation inducing steroid 17 20 beta dihydroxy 4 pregnen 3 one 17 20 beta DHP in teleost the receptor for each pathway is suggested to be different and thus signal transduction pathways are different. While much progresses achieved on the molecular mechanisms for induction of oocyte maturation the mechanisms to induce ovulation is under elucidation. Previously we established the procedure that can make it possible to prepare the ovarian tissue which contains oocyte maturation induced oocytes in vivo. In the same way ovulation can be induced in alive zebrafish. Thus it became possible to select the genes up regulated according to ovulation by compare the gene expression between maturation inducing genes in matured oocytes and both maturation and ovulation inducing genes in ovulated eggs. In vivo bioassay has been applied to prepare maturated and ovulated ovarian samples. Specifically up regulated genes to induce ovulation will be selected by RNA seq analysis. The mRNA abundance of highly up regulated genes will be confirmed by q PCR analysis. By this project ovulation inducing genes will be selected and its roles in induction of ovulation will be addressed in the future. | natural paring early sample | zebrafish ovary isolated from adult fish natural paring oocyte maturation. [RNAseq replicate1] | SAMD00073598 | sample name:M|replicate:biological replicate 1 | Illumina HiSeq 2500 sequencing of SAMD00073598 | DRX078022 | zebrafish ovary isolated from adult fish natural paring oocyte maturation. [RNAseq replicate1] | 1 | Agilent SureSelect Strand Specific RNA Prep Kit | RNA-Seq | TRANSCRIPTOMIC | PolyA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>36</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | DRP004758 | Illumina HiSeq 2500 sequencing of SAMD00073598 | 1050981012.0 | 29193917.0 | DRR084191 | 0:36 | A:241048832;C:256186268;G:260277071;T:293299597;N:169244 | 36 | 241048832 | 256186268 | 260277071 | 293299597 | 169244 | DRX078022 | DRS086516 | DRA005484 | SHIZUOKA|Shizuoka University | Shizuoka University | 1 | 0.9088 | 0.02369 | 0.7624 | 0.47998 | 36 | B | usable mapping rate | illumina | hiseq_era | unknown | poly_a | unknown | bulk | unknown | unknown | Japan | 2019-01-23 | Zygote | Embryo | Multi-tissue | Multi-system | |||||||||||||||||||||||||
| 5795 | 5795 | ERR1698352 | ERX1767860 | ERS1417534 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 012 up 058 12 | SAMEA4518355 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518355|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 012 up 058 12|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 012 up 058 12|sex:male | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 012 up 058 12 s | IonXpressRNA 012 up 058 12 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: male:sex|Experimental Factor: 17 ethinylestradiol:compound|Experimental Factor: 2.14:dose | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_012_up_058_12.fastq.gz | fastq | 2535299006.0 | 33956077.0 | E MTAB 5173:IonXpressRNA 012 up 058 12 | 0:74.66 | A:719061985;C:581906269;G:579932234;T:654398518;N:0 | 74 | 719061985 | 581906269 | 579932234 | 654398518 | 0 | ERX1767860 | ERS1417534 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.7343 | 0.34119 | 0.7359 | 0.48406 | 66 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5796 | 5796 | ERR1698351 | ERX1767859 | ERS1417533 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 011 up 058 11 | SAMEA4518354 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518354|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 011 up 058 11|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 011 up 058 11|sex:male | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 011 up 058 11 s | IonXpressRNA 011 up 058 11 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: male:sex|Experimental Factor: 17 ethinylestradiol:compound|Experimental Factor: 2.14:dose | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_011_up_058_11.fastq.gz | fastq | 3400774471.0 | 38709756.0 | E MTAB 5173:IonXpressRNA 011 up 058 11 | 0:87.85 | A:948991439;C:793389977;G:792539547;T:865853508;N:0 | 87 | 948991439 | 793389977 | 792539547 | 865853508 | 0 | ERX1767859 | ERS1417533 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.63968 | 0.27033 | 0.75213 | 0.47966 | 139 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5797 | 5797 | ERR1698350 | ERX1767858 | ERS1417532 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 010 up 058 10 | SAMEA4518353 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518353|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 010 up 058 10|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 010 up 058 10|sex:male | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 010 up 058 10 s | IonXpressRNA 010 up 058 10 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: male:sex|Experimental Factor: 17 ethinylestradiol:compound|Experimental Factor: 2.14:dose | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_010_up_058_10.fastq.gz | fastq | 3502667998.0 | 39204781.0 | E MTAB 5173:IonXpressRNA 010 up 058 10 | 0:89.34 | A:976977303;C:803330255;G:808731995;T:913628445;N:0 | 89 | 976977303 | 803330255 | 808731995 | 913628445 | 0 | ERX1767858 | ERS1417532 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.65846 | 0.2815 | 0.74028 | 0.47784 | 86 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5798 | 5798 | ERR1698349 | ERX1767857 | ERS1417531 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 009 up 058 9 | SAMEA4518352 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518352|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 009 up 058 9|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 009 up 058 9|sex:male | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 009 up 058 9 s | IonXpressRNA 009 up 058 9 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: male:sex|Experimental Factor: n1:compound | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_009_up_058_9.fastq.gz | fastq | 3575088264.0 | 39745481.0 | E MTAB 5173:IonXpressRNA 009 up 058 9 | 0:89.95 | A:1011474126;C:809896078;G:807471974;T:946246086;N:0 | 89 | 1011474126 | 809896078 | 807471974 | 946246086 | 0 | ERX1767857 | ERS1417531 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.65266 | 0.30274 | 0.75286 | 0.48527 | 94 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5799 | 5799 | ERR1698348 | ERX1767856 | ERS1417530 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 008 up 058 8 | SAMEA4518351 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518351|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 008 up 058 8|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 008 up 058 8|sex:male | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 008 up 058 8 s | IonXpressRNA 008 up 058 8 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: male:sex|Experimental Factor: n1:compound | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_008_up_058_8.fastq.gz | fastq | 3259710114.0 | 38530802.0 | E MTAB 5173:IonXpressRNA 008 up 058 8 | 0:84.60 | A:916053004;C:755694888;G:751125332;T:836836890;N:0 | 84 | 916053004 | 755694888 | 751125332 | 836836890 | 0 | ERX1767856 | ERS1417530 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.70995 | 0.31365 | 0.74781 | 0.48846 | 61 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5800 | 5800 | ERR1698347 | ERX1767855 | ERS1417529 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 007 up 058 7 | SAMEA4518350 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518350|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 007 up 058 7|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 007 up 058 7|sex:male | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 007 up 058 7 s | IonXpressRNA 007 up 058 7 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: male:sex|Experimental Factor: n1:compound | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_007_up_058_7.fastq.gz | fastq | 2307842164.0 | 28984666.0 | E MTAB 5173:IonXpressRNA 007 up 058 7 | 0:79.62 | A:634041732;C:548565089;G:545418985;T:579816358;N:0 | 79 | 634041732 | 548565089 | 545418985 | 579816358 | 0 | ERX1767855 | ERS1417529 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.67542 | 0.2817 | 0.74168 | 0.47224 | 37 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5801 | 5801 | ERR1698346 | ERX1767854 | ERS1417528 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 006 up 058 6 | SAMEA4518349 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518349|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 006 up 058 6|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 006 up 058 6|sex:female | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 006 up 058 6 s | IonXpressRNA 006 up 058 6 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: female:sex|Experimental Factor: 17 ethinylestradiol:compound|Experimental Factor: 7.34:dose | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_006_up_058_6.fastq.gz | fastq | 2239484857.0 | 27021234.0 | E MTAB 5173:IonXpressRNA 006 up 058 6 | 0:82.88 | A:637326624;C:506830056;G:503508207;T:591819970;N:0 | 82 | 637326624 | 506830056 | 503508207 | 591819970 | 0 | ERX1767854 | ERS1417528 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.66441 | 0.31904 | 0.74905 | 0.47154 | 122 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5802 | 5802 | ERR1698345 | ERX1767853 | ERS1417527 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 005 up 058 5 | SAMEA4518348 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518348|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 005 up 058 5|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 005 up 058 5|sex:female | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 005 up 058 5 s | IonXpressRNA 005 up 058 5 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: female:sex|Experimental Factor: 17 ethinylestradiol:compound|Experimental Factor: 7.34:dose | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_005_up_058_5.fastq.gz | fastq | 2920608487.0 | 39573075.0 | E MTAB 5173:IonXpressRNA 005 up 058 5 | 0:73.80 | A:814851327;C:678116994;G:691911192;T:735728974;N:0 | 73 | 814851327 | 678116994 | 691911192 | 735728974 | 0 | ERX1767853 | ERS1417527 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.60005 | 0.25542 | 0.76481 | 0.4886 | 12 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5803 | 5803 | ERR1698344 | ERX1767852 | ERS1417526 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 004 up 058 4 | SAMEA4518347 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518347|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 004 up 058 4|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 004 up 058 4|sex:female | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 004 up 058 4 s | IonXpressRNA 004 up 058 4 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: female:sex|Experimental Factor: 17 ethinylestradiol:compound|Experimental Factor: 7.34:dose | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_004_up_058_4.fastq.gz | fastq | 2989727396.0 | 37953454.0 | E MTAB 5173:IonXpressRNA 004 up 058 4 | 0:78.77 | A:802963810;C:722434772;G:742850530;T:721478284;N:0 | 78 | 802963810 | 722434772 | 742850530 | 721478284 | 0 | ERX1767852 | ERS1417526 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.76402 | 0.32503 | 0.74241 | 0.4815 | 128 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5804 | 5804 | ERR1698343 | ERX1767851 | ERS1417525 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 003 up 058 3 | SAMEA4518346 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518346|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 003 up 058 3|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 003 up 058 3|sex:female | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 003 up 058 3 s | IonXpressRNA 003 up 058 3 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: female:sex|Experimental Factor: n1:compound | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_003_up_058_3.fastq.gz | fastq | 4068383115.0 | 41996847.0 | E MTAB 5173:IonXpressRNA 003 up 058 3 | 0:96.87 | A:1133167706;C:944306379;G:948626944;T:1042282086;N:0 | 96 | 1133167706 | 944306379 | 948626944 | 1042282086 | 0 | ERX1767851 | ERS1417525 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.54804 | 0.22334 | 0.76353 | 0.49163 | 93 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5805 | 5805 | ERR1698342 | ERX1767850 | ERS1417524 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 002 up 058 2 | SAMEA4518345 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518345|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 002 up 058 2|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 002 up 058 2|sex:female | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 002 up 058 2 s | IonXpressRNA 002 up 058 2 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: female:sex|Experimental Factor: n1:compound | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_002_up_058_2.fastq.gz | fastq | 2679963893.0 | 33552723.0 | E MTAB 5173:IonXpressRNA 002 up 058 2 | 0:79.87 | A:709092431;C:635329399;G:670478210;T:665063853;N:0 | 79 | 709092431 | 635329399 | 670478210 | 665063853 | 0 | ERX1767850 | ERS1417524 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.43283 | 0.18649 | 0.81178 | 0.52885 | 116 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 5806 | 5806 | ERR1698341 | ERX1767849 | ERS1417523 | ERP018188 | PRJEB16335 | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17a ethinylestradiol | E-MTAB-5173 | Transcriptome Analysis | 17a ethinylestradiol EE2 is a synthetic estrogen commonly used as an active substance in oral contraceptives. It is frequently found in waste water effluent and raise concern due to its persistent nature. EE2 binds to estrogen receptors with similar affinity to oestradiol and acts as one of the most potent hormone mimics found in the environment. Estrogen is involved in many aspects of the development of the neuroendocrine system influencing both brain structure and behavior. We and others have reported a significant effect on non reproductive behaviors in adult fish and in recent studies we found that developmental exposure to EE2 resulted in an anxiogenic phenotype as adults even post a long remediation period. In this study we aim to study possible mechanisms behind the behavior alterations of zebrafish developmentally exposed to EE2 by sequencing the whole brain transcriptome. Zebrafish embryos were exposed to 0 2.14 and 7.34 ng/L EE2 from 1 day to 80 dpf post the exposure period a remediation period of 120 days followed before the fish were sampled. 3 male brains from the control group 0 ng/L and the 2.14 ng/L group were sampled and 3 female brains from the control group 0 ng/L and 7.34 ng/L were sampled. | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2016 10 19|ArrayExpress:E MTAB 5173 | Protocols: RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | IonXpressRNA 001 up 058 1 | SAMEA4518344 | School of Natural Science, Technology and Environmental Studies Sodertorn University | ENA first public:2017 10 02|ENA last update:2016 10 19|External Id:SAMEA4518344|INSDC center alias:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC center name:School of Natural Science Technology and Environmental Studies Sodertorn University|INSDC first public:2017 10 02T17:05:16Z|INSDC last update:2016 10 19T13:53:59Z|INSDC status:public|Submitter Id:E MTAB 5173:IonXpressRNA 001 up 058 1|age:200|broker name:ArrayExpress|common name:zebrafish|organism part:brain|sample name:E MTAB 5173:IonXpressRNA 001 up 058 1|sex:female | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | E MTAB 5173:IonXpressRNA 001 up 058 1 s | IonXpressRNA 001 up 058 1 s | RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | RNA extraction Whole brains homogenized in TriReagent according to the manufacturer 0.8 ml/sample Sigma Aldrich Germany EE2 exposure. Fish exposed to 0 2.14 or 7.34 ng/L EE2 for 80 days starting 1 dpf Ion Whole transcriptome analysis kit on RiboZero eukaryote depleted total RNA | Experimental Factor: female:sex|Experimental Factor: n1:compound | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ION_TORRENT | Ion Torrent Proton | ERP018188 | Ion Torrent Proton sequencing; RNA seq of the zebrafish danio rerio brain post developmental exposure to 17α ethinylestradiol | ENA FIRST PUBLIC:2017 10 02|ENA LAST UPDATE:2018 11 16 | IonXpressRNA_001_up_058_1.fastq.gz | fastq | 3358902499.0 | 39857024.0 | E MTAB 5173:IonXpressRNA 001 up 058 1 | 0:84.27 | A:933405205;C:784111716;G:780404241;T:860981337;N:0 | 84 | 933405205 | 784111716 | 780404241 | 860981337 | 0 | ERX1767849 | ERS1417523 | ERA739176 | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | School of Natural Science, Technology and Environmental Studies Sodertorn University|European Nucleotide Archive | 1 | 0.71789 | 0.33159 | 0.76619 | 0.514 | 56 | B | usable mapping rate | ion_torrent | ion_torrent | full_length | random_priming | ribozero | bulk | unknown | unknown | Sweden | 2016-10-19 | Pharyngula | Embryo | Brain | Nervous System | ||||||||||||||||||||
| 8088 | 8088 | ERR034127 | ERX012653 | ERS032268 | ERP000635 | PRJEB2512 | The Zebrafish transcriptome during early development | KI-BN-JKE-DRERIO-RNASEQ-2011 | Transcriptome Analysis | Background: Zebrafish Danio rerio is an important model for the study of early vertebrate development. The transition from fertilized egg to embryo is accompanied by a multitude of changes in gene expression and the transcriptional events that underlie these processes have not been fully characterized. In this study we use RNA Seq to characterize and compare the transcriptome of four early developmental stages in zebrafish on a global scale. Results: An average of 79M total reads were detected from the different stages. Out of the total number of reads 65% 73% reads were successfully mapped to the zebrafish genome and 36% 44% out of those were uniquely mapped. The total number of detected unique gene transcripts was 11187 of which 10096 of these were already present at 1 cell stage. The largest number of common transcripts was observed between 1 cell stage and 16 cell stage. An enrichment of gene transcripts with molecular functions of DNA binding protein folding and processing as well as metal ion binding was observed with progression of development. To confirm our RNA Seq results and to further investigate the developmental expression of specific genes the transcript levels of a subset of genes were analyzed using TaqMan® array micro fluidic card TLDA. Conclusion: Clustering analysis of the detected transcripts show a majority of gene transcripts being present at steady levels with a minority of the gene transcripts clustering as increasing or decreasing in expression during development. Developmental stages pre MBT were similar when comparing highly expressed genes whereas 50% epiboly stage differed from the earlier three stages in highly expressed genes number of uniquely expressed genes and enrichment of GO molecular functions. | RNA extracted from zebrafish embryo at 50% epiboly stage | zebrafish embryo 50 epiboly | SAMEA791629 | Department of Biosciences and Nutrition, Karolinska Institutet, Sweden | ENA first public:2011 06 09|ENA last update:2018 03 08|External Id:SAMEA791629|INSDC center alias:KI BN|INSDC center name:Department of Biosciences and Nutrition Karolinska Institutet Sweden|INSDC first public:2011 06 09T11:04:10Z|INSDC last update:2018 03 08T15:26:39Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2011 50epiboly|common name:zebrafish|sample name:KI BN JKE DRERIO RNASEQ 2011 50epiboly|sex:mixed|strain:Tuebingen | Transcriptome profiling of early zebrafish development | KI BN JKE DRERIO RNASEQ 2011 50epiboly | JKE Drerio rna seq | Transcriptome profiling of 50% epiboly stages of zebrafish embryos. | Total RNA was extracted from approximately 150 embryos per developmental stage using Trireagent Sigma Aldrich. The total RNA was then processed further according to the Small RNA Expression Kit Applied Biosystems. | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ABI_SOLID | AB SOLiD System 3.0 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>50</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | ERP000635 | AB SOLiD System 3.0 sequencing; Transcriptome profiling of early zebrafish development | ENA FIRST PUBLIC:2011 06 09|ENA LAST UPDATE:2018 11 16 | KI-BN-JKE-DRERIO-RNASEQ-2011-50epiboly.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-2011-50epiboly_QV.qual.gz | SOLiD_native SOLiD_native | 3929903550.0 | 78598071.0 | KI BN JKE DRERIO RNASEQ 2011 50epiboly | 0:50 | 50 | ERX012653 | ERS032268 | ERA029959 | KI-BN|Department of Biosciences and Nutrition | Department of Biosciences and Nutrition, Karolinska Institutet, Sweden | 1 | 0.60757 | 0.09893 | 0.94899 | 0.77821 | 50 | B | usable mapping rate | legacy | early | unknown | random_priming | unknown | bulk | unknown | unknown | Sweden | 2011-06-09 | Gastrula | Embryo | Embryo Imprecise | All anatomical structures | |||||||||||||||||||||||||||
| 8089 | 8089 | ERR034126 | ERX012652 | ERS032267 | ERP000635 | PRJEB2512 | The Zebrafish transcriptome during early development | KI-BN-JKE-DRERIO-RNASEQ-2011 | Transcriptome Analysis | Background: Zebrafish Danio rerio is an important model for the study of early vertebrate development. The transition from fertilized egg to embryo is accompanied by a multitude of changes in gene expression and the transcriptional events that underlie these processes have not been fully characterized. In this study we use RNA Seq to characterize and compare the transcriptome of four early developmental stages in zebrafish on a global scale. Results: An average of 79M total reads were detected from the different stages. Out of the total number of reads 65% 73% reads were successfully mapped to the zebrafish genome and 36% 44% out of those were uniquely mapped. The total number of detected unique gene transcripts was 11187 of which 10096 of these were already present at 1 cell stage. The largest number of common transcripts was observed between 1 cell stage and 16 cell stage. An enrichment of gene transcripts with molecular functions of DNA binding protein folding and processing as well as metal ion binding was observed with progression of development. To confirm our RNA Seq results and to further investigate the developmental expression of specific genes the transcript levels of a subset of genes were analyzed using TaqMan® array micro fluidic card TLDA. Conclusion: Clustering analysis of the detected transcripts show a majority of gene transcripts being present at steady levels with a minority of the gene transcripts clustering as increasing or decreasing in expression during development. Developmental stages pre MBT were similar when comparing highly expressed genes whereas 50% epiboly stage differed from the earlier three stages in highly expressed genes number of uniquely expressed genes and enrichment of GO molecular functions. | RNA extracted from zebrafish embryo at 512 cell stage | zebrafish embryo 512 cell | SAMEA791632 | Department of Biosciences and Nutrition, Karolinska Institutet, Sweden | ENA first public:2011 06 09|ENA last update:2018 03 08|External Id:SAMEA791632|INSDC center alias:KI BN|INSDC center name:Department of Biosciences and Nutrition Karolinska Institutet Sweden|INSDC first public:2011 06 09T11:04:10Z|INSDC last update:2018 03 08T15:26:39Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2011 512cell|common name:zebrafish|sample name:KI BN JKE DRERIO RNASEQ 2011 512cell|sex:mixed|strain:Tuebingen | Transcriptome profiling of early zebrafish development | KI BN JKE DRERIO RNASEQ 2011 512cell | JKE Drerio rna seq | Transcriptome profiling of 512 cell stage of zebrafish embryos. | Total RNA was extracted from approximately 150 embryos per developmental stage using Trireagent Sigma Aldrich. The total RNA was then processed further according to the Small RNA Expression Kit Applied Biosystems. | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ABI_SOLID | AB SOLiD System 3.0 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>50</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | ERP000635 | AB SOLiD System 3.0 sequencing; Transcriptome profiling of early zebrafish development | ENA FIRST PUBLIC:2011 06 09|ENA LAST UPDATE:2018 11 16 | KI-BN-JKE-DRERIO-RNASEQ-2011-512cell.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-2011-512cell_QV.qual.gz | SOLiD_native SOLiD_native | 3918756250.0 | 78375125.0 | KI BN JKE DRERIO RNASEQ 2011 512cell | 0:50 | 50 | ERX012652 | ERS032267 | ERA029959 | KI-BN|Department of Biosciences and Nutrition | Department of Biosciences and Nutrition, Karolinska Institutet, Sweden | 1 | 0.63824 | 0.09111 | 0.91969 | 0.73496 | 50 | B | usable mapping rate | legacy | early | unknown | random_priming | unknown | bulk | unknown | unknown | Sweden | 2011-06-09 | Blastula | Embryo | Embryo Imprecise | All anatomical structures | |||||||||||||||||||||||||||
| 8090 | 8090 | ERR034125 | ERX012651 | ERS032266 | ERP000635 | PRJEB2512 | The Zebrafish transcriptome during early development | KI-BN-JKE-DRERIO-RNASEQ-2011 | Transcriptome Analysis | Background: Zebrafish Danio rerio is an important model for the study of early vertebrate development. The transition from fertilized egg to embryo is accompanied by a multitude of changes in gene expression and the transcriptional events that underlie these processes have not been fully characterized. In this study we use RNA Seq to characterize and compare the transcriptome of four early developmental stages in zebrafish on a global scale. Results: An average of 79M total reads were detected from the different stages. Out of the total number of reads 65% 73% reads were successfully mapped to the zebrafish genome and 36% 44% out of those were uniquely mapped. The total number of detected unique gene transcripts was 11187 of which 10096 of these were already present at 1 cell stage. The largest number of common transcripts was observed between 1 cell stage and 16 cell stage. An enrichment of gene transcripts with molecular functions of DNA binding protein folding and processing as well as metal ion binding was observed with progression of development. To confirm our RNA Seq results and to further investigate the developmental expression of specific genes the transcript levels of a subset of genes were analyzed using TaqMan® array micro fluidic card TLDA. Conclusion: Clustering analysis of the detected transcripts show a majority of gene transcripts being present at steady levels with a minority of the gene transcripts clustering as increasing or decreasing in expression during development. Developmental stages pre MBT were similar when comparing highly expressed genes whereas 50% epiboly stage differed from the earlier three stages in highly expressed genes number of uniquely expressed genes and enrichment of GO molecular functions. | RNA extracted from zebrafish embryo at 16 cell stage | zebrafish embryo 16 cell | SAMEA791631 | Department of Biosciences and Nutrition, Karolinska Institutet, Sweden | ENA first public:2011 06 09|ENA last update:2018 03 08|External Id:SAMEA791631|INSDC center alias:KI BN|INSDC center name:Department of Biosciences and Nutrition Karolinska Institutet Sweden|INSDC first public:2011 06 09T11:04:10Z|INSDC last update:2018 03 08T15:26:39Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2011 16cell|common name:zebrafish|sample name:KI BN JKE DRERIO RNASEQ 2011 16cell|sex:mixed|strain:Tuebingen | Transcriptome profiling of early zebrafish development | KI BN JKE DRERIO RNASEQ 2011 16cell | JKE Drerio rna seq | Transcriptome profiling of 16 cell stage of zebrafish embryos. | Total RNA was extracted from approximately 150 embryos per developmental stage using Trireagent Sigma Aldrich. The total RNA was then processed further according to the Small RNA Expression Kit Applied Biosystems. | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ABI_SOLID | AB SOLiD System 3.0 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>50</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | ERP000635 | AB SOLiD System 3.0 sequencing; Transcriptome profiling of early zebrafish development | ENA FIRST PUBLIC:2011 06 09|ENA LAST UPDATE:2018 11 16 | KI-BN-JKE-DRERIO-RNASEQ-2011-16cell.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-2011-16cell_QV.qual.gz | SOLiD_native SOLiD_native | 4256756500.0 | 85135130.0 | KI BN JKE DRERIO RNASEQ 2011 16cell | 0:50 | 50 | ERX012651 | ERS032266 | ERA029959 | KI-BN|Department of Biosciences and Nutrition | Department of Biosciences and Nutrition, Karolinska Institutet, Sweden | 1 | 0.57946 | 0.08115 | 0.91896 | 0.72164 | 50 | B | usable mapping rate | legacy | early | unknown | random_priming | unknown | bulk | unknown | unknown | Sweden | 2011-06-09 | Cleavage | Embryo | Embryo Imprecise | All anatomical structures | |||||||||||||||||||||||||||
| 8091 | 8091 | ERR034124 | ERX012650 | ERS032265 | ERP000635 | PRJEB2512 | The Zebrafish transcriptome during early development | KI-BN-JKE-DRERIO-RNASEQ-2011 | Transcriptome Analysis | Background: Zebrafish Danio rerio is an important model for the study of early vertebrate development. The transition from fertilized egg to embryo is accompanied by a multitude of changes in gene expression and the transcriptional events that underlie these processes have not been fully characterized. In this study we use RNA Seq to characterize and compare the transcriptome of four early developmental stages in zebrafish on a global scale. Results: An average of 79M total reads were detected from the different stages. Out of the total number of reads 65% 73% reads were successfully mapped to the zebrafish genome and 36% 44% out of those were uniquely mapped. The total number of detected unique gene transcripts was 11187 of which 10096 of these were already present at 1 cell stage. The largest number of common transcripts was observed between 1 cell stage and 16 cell stage. An enrichment of gene transcripts with molecular functions of DNA binding protein folding and processing as well as metal ion binding was observed with progression of development. To confirm our RNA Seq results and to further investigate the developmental expression of specific genes the transcript levels of a subset of genes were analyzed using TaqMan® array micro fluidic card TLDA. Conclusion: Clustering analysis of the detected transcripts show a majority of gene transcripts being present at steady levels with a minority of the gene transcripts clustering as increasing or decreasing in expression during development. Developmental stages pre MBT were similar when comparing highly expressed genes whereas 50% epiboly stage differed from the earlier three stages in highly expressed genes number of uniquely expressed genes and enrichment of GO molecular functions. | RNA extracted from zebrafish embryo at 1 cell stage | zebrafish embryo 1 cell | SAMEA791630 | Department of Biosciences and Nutrition, Karolinska Institutet, Sweden | ENA first public:2011 06 09|ENA last update:2018 03 08|External Id:SAMEA791630|INSDC center alias:KI BN|INSDC center name:Department of Biosciences and Nutrition Karolinska Institutet Sweden|INSDC first public:2011 06 09T11:04:10Z|INSDC last update:2018 03 08T15:26:39Z|INSDC status:public|Submitter Id:KI BN JKE DRERIO RNASEQ 2011 1cell|common name:zebrafish|sample name:KI BN JKE DRERIO RNASEQ 2011 1cell|sex:mixed|strain:Tuebingen | Transcriptome profiling of early zebrafish development | KI BN JKE DRERIO RNASEQ 2011 1cell | JKE Drerio rna seq | Transcriptome profiling of 1 cell stage of zebrafish embryos. | Total RNA was extracted from approximately 150 embryos per developmental stage using Trireagent Sigma Aldrich. The total RNA was then processed further according to the Small RNA Expression Kit Applied Biosystems. | RNA-Seq | TRANSCRIPTOMIC | RANDOM | SINGLE | ABI_SOLID | AB SOLiD System 3.0 | <SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>50</SPOT_LENGTH><READ_SPEC><READ_INDEX>0</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Forward</READ_TYPE><BASE_COORD>1</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR> | ERP000635 | AB SOLiD System 3.0 sequencing; Transcriptome profiling of early zebrafish development | ENA FIRST PUBLIC:2011 06 09|ENA LAST UPDATE:2018 11 16 | KI-BN-JKE-DRERIO-RNASEQ-2011-1cell.csfasta.gz KI-BN-JKE-DRERIO-RNASEQ-2011-1cell_QV.qual.gz | SOLiD_native SOLiD_native | 3676380950.0 | 73527619.0 | KI BN JKE DRERIO RNASEQ 2011 1cell | 0:50 | 50 | ERX012650 | ERS032265 | ERA029959 | KI-BN|Department of Biosciences and Nutrition | Department of Biosciences and Nutrition, Karolinska Institutet, Sweden | 1 | 0.64855 | 0.08432 | 0.9052 | 0.74223 | 50 | B | usable mapping rate | legacy | early | unknown | random_priming | unknown | bulk | unknown | unknown | Sweden | 2011-06-09 | Zygote | Embryo | Embryo Imprecise | All anatomical structures | |||||||||||||||||||||||||||
| 9717 | 9717 | ERR3842002 | ERX3854564 | ERS4268611 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 4Ei | SAMEA6504165 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:05:06Z|ENA LAST UPDATE:2020 01 27T16:04:35Z|External Id:SAMEA6504165|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:05:06Z|INSDC last update:2020 01 27T16:04:35Z|INSDC status:public|Submitter Id:Shield 4Ei|common name:zebrafish|sample name:Shield 4Ei|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 17:26:02:557 2 | Shield 4Ei LSU | OTHER | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 10915827408.0 | 143629308.0 | ena RUN Computational Biology Unit 27 01 2020 17:26:02:557 2 | 0:76 | A:3900515347;C:2409375725;G:3041696977;T:1564127293;N:112066 | 76 | 3900515347 | 2409375725 | 3041696977 | 1564127293 | 112066 | ERX3854564 | ERS4268611 | ERA2359340 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.64398 | 0.40944 | 0.98817 | 0.59337 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9718 | 9718 | ERR3842001 | ERX3854563 | ERS4268611 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 4Ei | SAMEA6504165 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:05:06Z|ENA LAST UPDATE:2020 01 27T16:04:35Z|External Id:SAMEA6504165|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:05:06Z|INSDC last update:2020 01 27T16:04:35Z|INSDC status:public|Submitter Id:Shield 4Ei|common name:zebrafish|sample name:Shield 4Ei|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 17:26:02:557 1 | Shield 4Ei SSU | OTHER | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 7154041880.0 | 94132130.0 | ena RUN Computational Biology Unit 27 01 2020 17:26:02:557 1 | 0:76 | A:2939474250;C:1489083073;G:1922522149;T:802890185;N:72223 | 76 | 2939474250 | 1489083073 | 1922522149 | 802890185 | 72223 | ERX3854563 | ERS4268611 | ERA2359340 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.4369 | 0.25417 | 0.9867 | 0.60047 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9719 | 9719 | ERR3842000 | ERX3854562 | ERS4268611 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 4Ei | SAMEA6504165 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:05:06Z|ENA LAST UPDATE:2020 01 27T16:04:35Z|External Id:SAMEA6504165|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:05:06Z|INSDC last update:2020 01 27T16:04:35Z|INSDC status:public|Submitter Id:Shield 4Ei|common name:zebrafish|sample name:Shield 4Ei|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 10 | Shield 4Ei | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1435748376.0 | 18891426.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 10 | 0:76 | A:489056518;C:372290023;G:393663734;T:180723629;N:14472 | 76 | 489056518 | 372290023 | 393663734 | 180723629 | 14472 | ERX3854562 | ERS4268611 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.11942 | 0.03394 | 0.98971 | 0.62271 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9720 | 9720 | ERR3841999 | ERX3854561 | ERS3556006 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 3 | SAMEA5752547 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752547|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:10|common name:zebrafish|dev stage:Shield|sample name:10|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 9 | Shield 3 | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1168482976.0 | 15374776.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 9 | 0:76 | A:516070340;C:238363428;G:268806793;T:145231087;N:11328 | 76 | 516070340 | 238363428 | 268806793 | 145231087 | 11328 | ERX3854561 | ERS3556006 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.22586 | 0.10275 | 0.97281 | 0.47683 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9721 | 9721 | ERR3841998 | ERX3854560 | ERS3556007 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 4150NT | SAMEA5752548 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752548|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:11|common name:zebrafish|dev stage:Shield|sample name:11|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 8 | Shield 150NT | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1188343980.0 | 15636105.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 8 | 0:76 | A:580658556;C:223116826;G:260847322;T:123709681;N:11595 | 76 | 580658556 | 223116826 | 260847322 | 123709681 | 11595 | ERX3854560 | ERS3556007 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.27037 | 0.13972 | 0.97392 | 0.39459 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9722 | 9722 | ERR3841997 | ERX3854559 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 7 | Shield 1 | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1278891444.0 | 16827519.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 7 | 0:76 | A:571738369;C:256385478;G:295145281;T:155610082;N:12234 | 76 | 571738369 | 256385478 | 295145281 | 155610082 | 12234 | ERX3854559 | ERS3556004 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.23116 | 0.11137 | 0.97932 | 0.45978 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9723 | 9723 | ERR3841996 | ERX3854558 | ERS3556001 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 3 | SAMEA5752542 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752542|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:5|common name:zebrafish|dev stage:Sphere|sample name:5|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 6 | Sphere 3 | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1439954368.0 | 18946768.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 6 | 0:76 | A:669362698;C:280496524;G:316727778;T:173353505;N:13863 | 76 | 669362698 | 280496524 | 316727778 | 173353505 | 13863 | ERX3854558 | ERS3556001 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.26155 | 0.12068 | 0.96915 | 0.45719 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9724 | 9724 | ERR3841995 | ERX3854557 | ERS3556000 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 2 | SAMEA5752541 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752541|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:4|common name:zebrafish|dev stage:Sphere|sample name:4|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 5 | Sphere 2 | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1592272200.0 | 20950950.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 5 | 0:76 | A:757507948;C:308394094;G:342142775;T:184211881;N:15502 | 76 | 757507948 | 308394094 | 342142775 | 184211881 | 15502 | ERX3854557 | ERS3556000 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.22483 | 0.10923 | 0.97646 | 0.49458 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9725 | 9725 | ERR3841994 | ERX3854556 | ERS3555999 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 1 | SAMEA5752540 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752540|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:3|common name:zebrafish|dev stage:Sphere|sample name:3|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 4 | Sphere 1 | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1332363676.0 | 17531101.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 4 | 0:76 | A:529354355;C:299445923;G:318745973;T:184804260;N:13165 | 76 | 529354355 | 299445923 | 318745973 | 184804260 | 13165 | ERX3854556 | ERS3555999 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.21197 | 0.0829 | 0.98196 | 0.55753 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9726 | 9726 | ERR3841993 | ERX3854555 | ERS3555998 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 2 | SAMEA5752539 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752539|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:2|common name:zebrafish|dev stage:64 cell|sample name:2|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 3 | 64 cell 3 | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1579307816.0 | 20780366.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 3 | 0:76 | A:589876602;C:380048242;G:392473318;T:216893826;N:15828 | 76 | 589876602 | 380048242 | 392473318 | 216893826 | 15828 | ERX3854555 | ERS3555998 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.15411 | 0.04564 | 0.97883 | 0.55376 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9727 | 9727 | ERR3841992 | ERX3854554 | ERS3556003 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 4Ei 10 | SAMEA5752544 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752544|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:7|common name:zebrafish|dev stage:64 cell|sample name:7|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:406 2 | 64 cell 4Ei | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1213585480.0 | 15968230.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 2 | 0:76 | A:548456563;C:244465528;G:271963808;T:148687764;N:11817 | 76 | 548456563 | 244465528 | 271963808 | 148687764 | 11817 | ERX3854554 | ERS3556003 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.21973 | 0.10926 | 0.97419 | 0.44348 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9728 | 9728 | ERR3841991 | ERX3854553 | ERS3555997 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 1 | SAMEA5752538 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752538|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:1|common name:zebrafish|dev stage:64 cell|sample name:1|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 27 01 2020 16:24:36:405 1 | 64 cell 1 | OTHER | RNA Seq | RNA-Seq | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2020 02 14 | 1494930944.0 | 19670144.0 | ena RUN Computational Biology Unit 27 01 2020 16:24:36:406 1 | 0:76 | A:543017836;C:366974203;G:367027373;T:217896401;N:15131 | 76 | 543017836 | 366974203 | 367027373 | 217896401 | 15131 | ERX3854553 | ERS3555997 | ERA2359305 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.2544 | 0.08957 | 0.96568 | 0.55681 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9729 | 9729 | ERR3489881 | ERX3511296 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 33 | Shield 1 F20 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 975578636.0 | 12836561.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 33 | 0:76 | A:398325549;C:237563934;G:230721299;T:108957698;N:10156 | 76 | 398325549 | 237563934 | 230721299 | 108957698 | 10156 | ERX3511296 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.33102 | 0.19766 | 0.99918 | 0.12812 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9730 | 9730 | ERR3489880 | ERX3511295 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 32 | Shield 1 F19 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 931166668.0 | 12252193.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 32 | 0:76 | A:271081669;C:253947035;G:272354427;T:133774815;N:8722 | 76 | 271081669 | 253947035 | 272354427 | 133774815 | 8722 | ERX3511295 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.15598 | 0.10707 | 0.99902 | 0.47314 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9731 | 9731 | ERR3489879 | ERX3511294 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 31 | Shield 1 F18 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 1506513268.0 | 19822543.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 31 | 0:76 | A:493273515;C:456544968;G:391677033;T:165002559;N:15193 | 76 | 493273515 | 456544968 | 391677033 | 165002559 | 15193 | ERX3511294 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.01562 | 0.0053 | 0.99908 | 0.8127 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9732 | 9732 | ERR3489878 | ERX3511293 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 30 | Shield 1 F17 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 1259456496.0 | 16571796.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 30 | 0:76 | A:471473123;C:333726472;G:302016190;T:152228002;N:12709 | 76 | 471473123 | 333726472 | 302016190 | 152228002 | 12709 | ERX3511293 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.18339 | 0.12544 | 0.99928 | 0.22368 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9733 | 9733 | ERR3489877 | ERX3511292 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 29 | Shield 1 F16 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 1364615872.0 | 17955472.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 29 | 0:76 | A:539462776;C:341141880;G:314571683;T:169426048;N:13485 | 76 | 539462776 | 341141880 | 314571683 | 169426048 | 13485 | ERX3511292 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.11663 | 0.07319 | 0.99939 | 0.25377 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9734 | 9734 | ERR3489876 | ERX3511291 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 28 | Shield 1 F15 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 952605888.0 | 12534288.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 28 | 0:76 | A:414133320;C:219437277;G:207418049;T:111607418;N:9824 | 76 | 414133320 | 219437277 | 207418049 | 111607418 | 9824 | ERX3511291 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.17603 | 0.10972 | 0.99935 | 0.13311 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9735 | 9735 | ERR3489875 | ERX3511290 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 27 | Shield 1 F14 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 870952628.0 | 11459903.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 27 | 0:76 | A:357710338;C:221475453;G:191231014;T:100526675;N:9148 | 76 | 357710338 | 221475453 | 191231014 | 100526675 | 9148 | ERX3511290 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.1248 | 0.06422 | 0.99896 | 0.34819 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9736 | 9736 | ERR3489874 | ERX3511289 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 26 | Shield 1 F13 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 981672620.0 | 12916745.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 26 | 0:76 | A:434153198;C:223317075;G:198260771;T:125932145;N:9431 | 76 | 434153198 | 223317075 | 198260771 | 125932145 | 9431 | ERX3511289 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.44603 | 0.25602 | 0.99874 | 0.18074 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9737 | 9737 | ERR3489873 | ERX3511288 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 25 | Shield 1 F12 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 1304618128.0 | 17166028.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 25 | 0:76 | A:651341516;C:270458496;G:243929520;T:138874830;N:13766 | 76 | 651341516 | 270458496 | 243929520 | 138874830 | 13766 | ERX3511288 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.64293 | 0.38159 | 0.99886 | 0.07313 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9738 | 9738 | ERR3489872 | ERX3511287 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 24 | Shield 1 F10 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 1336115948.0 | 17580473.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 24 | 0:76 | A:608634206;C:295943144;G:286494431;T:145029697;N:14470 | 76 | 608634206 | 295943144 | 286494431 | 145029697 | 14470 | ERX3511287 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.68758 | 0.47517 | 0.99898 | 0.02301 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9739 | 9739 | ERR3489871 | ERX3511286 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 23 | Shield 1 F9 | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 1434402492.0 | 18873717.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 23 | 0:76 | A:658705664;C:297967081;G:295595736;T:182118632;N:15379 | 76 | 658705664 | 297967081 | 295595736 | 182118632 | 15379 | ERX3511286 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.74246 | 0.44235 | 0.99701 | 0.03112 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9740 | 9740 | ERR3489870 | ERX3511285 | ERS3556007 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 4150NT | SAMEA5752548 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752548|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:11|common name:zebrafish|dev stage:Shield|sample name:11|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 22 | Shield 4150NT LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 24 | 24063208094.0 | 159358994.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 22 | 0:151 | A:7153064588;C:5242791119;G:8513736630;T:3152547276;N:1068481 | 151 | 7153064588 | 5242791119 | 8513736630 | 3152547276 | 1068481 | ERX3511285 | ERS3556007 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.81267 | 0.27138 | 0.99868 | 0.91938 | 151 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9741 | 9741 | ERR3489869 | ERX3511284 | ERS3556007 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 4150NT | SAMEA5752548 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752548|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:11|common name:zebrafish|dev stage:Shield|sample name:11|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 21 | Shield 4150NT SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 24 | 14987998619.0 | 99258269.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 21 | 0:151 | A:4578051806;C:2616328922;G:5914185813;T:1878780090;N:651988 | 151 | 4578051806 | 2616328922 | 5914185813 | 1878780090 | 651988 | ERX3511284 | ERS3556007 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.77096 | 0.5278 | 0.99833 | 0.42635 | 151 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9742 | 9742 | ERR3489868 | ERX3511283 | ERS3556003 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 4Ei 10 | SAMEA5752544 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752544|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:7|common name:zebrafish|dev stage:64 cell|sample name:7|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 20 | 64 cell 4Ei 10 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 5928054796.0 | 78000721.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 20 | 0:76 | A:2109854905;C:1377083508;G:1616166285;T:824889630;N:60468 | 76 | 2109854905 | 1377083508 | 1616166285 | 824889630 | 60468 | ERX3511283 | ERS3556003 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.61525 | 0.45233 | 0.99379 | 0.57373 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9743 | 9743 | ERR3489867 | ERX3511282 | ERS3556003 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 4Ei 10 | SAMEA5752544 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752544|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:7|common name:zebrafish|dev stage:64 cell|sample name:7|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 19 | 64 cell 4Ei 10 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 9772604780.0 | 128586905.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 19 | 0:76 | A:3901301079;C:2223067879;G:2553338016;T:1094797648;N:100158 | 76 | 3901301079 | 2223067879 | 2553338016 | 1094797648 | 100158 | ERX3511282 | ERS3556003 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.52103 | 0.25046 | 0.9861 | 0.64575 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9744 | 9744 | ERR3489866 | ERX3511281 | ERS3556002 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 4Ei 0.1 | SAMEA5752543 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752543|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:6|common name:zebrafish|dev stage:64 cell|sample name:6|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 18 | 64 cell 4Ei 0.1 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 09 26 | 6730725680.0 | 88562180.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 18 | 0:76 | A:3805722011;C:1188715051;G:1382258076;T:353814168;N:216374 | 76 | 3805722011 | 1188715051 | 1382258076 | 353814168 | 216374 | ERX3511281 | ERS3556002 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.61922 | 0.37217 | 0.99527 | 0.29148 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9745 | 9745 | ERR3489865 | ERX3511280 | ERS3556002 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 4Ei 0.1 | SAMEA5752543 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752543|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:6|common name:zebrafish|dev stage:64 cell|sample name:6|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 17 | 64 cell 4Ei 0.1 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 09 26 | 10616304872.0 | 139688222.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 17 | 0:76 | A:4717003484;C:2600725234;G:2586105174;T:712124440;N:346540 | 76 | 4717003484 | 2600725234 | 2586105174 | 712124440 | 346540 | ERX3511280 | ERS3556002 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.30908 | 0.08252 | 0.94683 | 0.69548 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9746 | 9746 | ERR3489864 | ERX3511279 | ERS3556006 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 3 | SAMEA5752547 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752547|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:10|common name:zebrafish|dev stage:Shield|sample name:10|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 16 | Shield 3 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 11777220072.0 | 154963422.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 16 | 0:76 | A:3368038444;C:3190496935;G:3529701152;T:1688766119;N:217422 | 76 | 3368038444 | 3190496935 | 3529701152 | 1688766119 | 217422 | ERX3511279 | ERS3556006 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.70681 | 0.18846 | 0.99332 | 0.71978 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9747 | 9747 | ERR3489863 | ERX3511278 | ERS3556006 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 3 | SAMEA5752547 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752547|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:10|common name:zebrafish|dev stage:Shield|sample name:10|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 15 | Shield 3 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 7920419952.0 | 104216052.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 15 | 0:76 | A:2990167185;C:1767708808;G:2104830363;T:1057568560;N:145036 | 76 | 2990167185 | 1767708808 | 2104830363 | 1057568560 | 145036 | ERX3511278 | ERS3556006 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.5052 | 0.30841 | 0.99129 | 0.60948 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9748 | 9748 | ERR3489862 | ERX3511277 | ERS3556005 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 2 | SAMEA5752546 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752546|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:9|common name:zebrafish|dev stage:Shield|sample name:9|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 14 | Shield 2 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 9775297004.0 | 128622329.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 14 | 0:76 | A:4750565405;C:2540992255;G:1698817649;T:784832634;N:89061 | 76 | 4750565405 | 2540992255 | 1698817649 | 784832634 | 89061 | ERX3511277 | ERS3556005 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.74003 | 0.5616 | 0.99855 | 0.03607 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9749 | 9749 | ERR3489861 | ERX3511276 | ERS3556005 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 2 | SAMEA5752546 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752546|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:9|common name:zebrafish|dev stage:Shield|sample name:9|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 13 | Shield 2 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 8210103300.0 | 108027675.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 13 | 0:76 | A:3300825043;C:2576709678;G:1707115198;T:625376255;N:77126 | 76 | 3300825043 | 2576709678 | 1707115198 | 625376255 | 77126 | ERX3511276 | ERS3556005 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.2787 | 0.17583 | 0.99752 | 0.50171 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9750 | 9750 | ERR3489860 | ERX3511275 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 12 | Shield 1 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 2437679936.0 | 32074736.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 12 | 0:76 | A:764355184;C:710492003;G:664031460;T:298777374;N:23915 | 76 | 764355184 | 710492003 | 664031460 | 298777374 | 23915 | ERX3511275 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.0406 | 0.02417 | 0.99908 | 0.61299 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9751 | 9751 | ERR3489859 | ERX3511274 | ERS3556004 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Shield 1 | SAMEA5752545 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752545|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:8|common name:zebrafish|dev stage:Shield|sample name:8|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 11 | Shield 1 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 3157243376.0 | 41542676.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 11 | 0:76 | A:1443205052;C:715251024;G:633421305;T:365333650;N:32345 | 76 | 1443205052 | 715251024 | 633421305 | 365333650 | 32345 | ERX3511274 | ERS3556004 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.47643 | 0.27944 | 0.99896 | 0.11464 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Gastrula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9752 | 9752 | ERR3489858 | ERX3511273 | ERS3556001 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 3 | SAMEA5752542 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752542|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:5|common name:zebrafish|dev stage:Sphere|sample name:5|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 10 | Sphere 3 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 2740392724.0 | 36057799.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 10 | 0:76 | A:1790452280;C:354001675;G:431182140;T:164697730;N:58899 | 76 | 1790452280 | 354001675 | 431182140 | 164697730 | 58899 | ERX3511273 | ERS3556001 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.87154 | 0.5323 | 0.99793 | 0.02983 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9753 | 9753 | ERR3489857 | ERX3511272 | ERS3556001 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 3 | SAMEA5752542 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752542|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:5|common name:zebrafish|dev stage:Sphere|sample name:5|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 9 | Sphere 3 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 6277242192.0 | 82595292.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 9 | 0:76 | A:3129446012;C:1311888416;G:1369035262;T:466745503;N:126999 | 76 | 3129446012 | 1311888416 | 1369035262 | 466745503 | 126999 | ERX3511272 | ERS3556001 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.65637 | 0.35975 | 0.9936 | 0.24734 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9754 | 9754 | ERR3489856 | ERX3511271 | ERS3556000 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 2 | SAMEA5752541 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752541|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:4|common name:zebrafish|dev stage:Sphere|sample name:4|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:424 8 | Sphere 2 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 24 | 6679993476.0 | 87894651.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 8 | 0:76 | A:3113787833;C:1255798935;G:1750515950;T:559763997;N:126761 | 76 | 3113787833 | 1255798935 | 1750515950 | 559763997 | 126761 | ERX3511271 | ERS3556000 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.66287 | 0.41208 | 0.99602 | 0.17083 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9755 | 9755 | ERR3489855 | ERX3511270 | ERS3556000 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 2 | SAMEA5752541 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752541|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:4|common name:zebrafish|dev stage:Sphere|sample name:4|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:423 7 | Sphere 2 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 13238731764.0 | 174193839.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:424 7 | 0:76 | A:7630016769;C:1835321568;G:2775223283;T:997916159;N:253985 | 76 | 7630016769 | 1835321568 | 2775223283 | 997916159 | 253985 | ERX3511270 | ERS3556000 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.77269 | 0.45994 | 0.99683 | 0.04249 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9756 | 9756 | ERR3489854 | ERX3511269 | ERS3555999 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 1 | SAMEA5752540 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752540|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:3|common name:zebrafish|dev stage:Sphere|sample name:3|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:423 6 | Sphere 1 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 24 | 3311799332.0 | 43576307.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:423 6 | 0:76 | A:1182325939;C:888677953;G:922571204;T:318159754;N:64482 | 76 | 1182325939 | 888677953 | 922571204 | 318159754 | 64482 | ERX3511269 | ERS3555999 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.57505 | 0.24459 | 0.99582 | 0.43365 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9757 | 9757 | ERR3489853 | ERX3511268 | ERS3555999 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | Sphere 1 | SAMEA5752540 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752540|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:3|common name:zebrafish|dev stage:Sphere|sample name:3|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:423 5 | Sphere 1 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 7403181508.0 | 97410283.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:423 5 | 0:76 | A:4338227974;C:1233250165;G:1372229712;T:459322295;N:151362 | 76 | 4338227974 | 1233250165 | 1372229712 | 459322295 | 151362 | ERX3511268 | ERS3555999 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.765 | 0.44747 | 0.99515 | 0.12467 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Blastula | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9758 | 9758 | ERR3489852 | ERX3511267 | ERS3555998 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 2 | SAMEA5752539 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752539|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:2|common name:zebrafish|dev stage:64 cell|sample name:2|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:423 4 | 64 cell 2 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 11722578884.0 | 154244459.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:423 4 | 0:76 | A:8175036829;C:1396062240;G:1882846539;T:268587131;N:46145 | 76 | 8175036829 | 1396062240 | 1882846539 | 268587131 | 46145 | ERX3511267 | ERS3555998 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.81133 | 0.41331 | 0.99823 | 0.03453 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9759 | 9759 | ERR3489851 | ERX3511266 | ERS3555998 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 2 | SAMEA5752539 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752539|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:2|common name:zebrafish|dev stage:64 cell|sample name:2|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:423 3 | 64 cell 2 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 9525478088.0 | 125335238.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:423 3 | 0:76 | A:4813606784;C:2048902072;G:2140220088;T:522714000;N:35144 | 76 | 4813606784 | 2048902072 | 2140220088 | 522714000 | 35144 | ERX3511266 | ERS3555998 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.59747 | 0.26784 | 0.996 | 0.21193 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9760 | 9760 | ERR3489850 | ERX3511265 | ERS3555997 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 1 | SAMEA5752538 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752538|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:1|common name:zebrafish|dev stage:64 cell|sample name:1|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:423 2 | 64 cell 1 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | 8544157652.0 | 112423127.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:423 2 | 0:76 | A:2633354802;C:2582123846;G:2505786164;T:822713754;N:179086 | 76 | 2633354802 | 2582123846 | 2505786164 | 822713754 | 179086 | ERX3511265 | ERS3555997 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.34707 | 0.02129 | 0.99797 | 0.62478 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9761 | 9761 | ERR3489849 | ERX3511264 | ERS3555997 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 1 | SAMEA5752538 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752538|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:1|common name:zebrafish|dev stage:64 cell|sample name:1|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 22 08 2019 11:57:43:423 1 | 64 cell 1 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 08 22 | run7_64_cell_SSU_12_13_14.fastq.gz | fastq | 10139466432.0 | 133414032.0 | ena RUN Computational Biology Unit 22 08 2019 11:57:43:423 1 | 0:76 1:0 | A:4628193785;C:2494821868;G:2485640988;T:530605907;N:203884 | 76 | 0 | 4628193785 | 2494821868 | 2485640988 | 530605907 | 203884 | ERX3511264 | ERS3555997 | ERA2100634 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.06893 | 0.02559 | 0.99766 | 0.90567 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | |||||||||||||||||||||
| 9762 | 9762 | ERR3413870 | ERX3437516 | ERS3555997 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 1 | SAMEA5752538 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752538|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:1|common name:zebrafish|dev stage:64 cell|sample name:1|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 03 07 2019 14:45:09:705 2 | 64 cell 1 LSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 8544157652.0 | 112423127.0 | ena RUN Computational Biology Unit 03 07 2019 14:45:09:705 2 | 0:76 | A:2633354802;C:2582123846;G:2505786164;T:822713754;N:179086 | 76 | 2633354802 | 2582123846 | 2505786164 | 822713754 | 179086 | ERX3437516 | ERS3555997 | ERA2028987 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.34696 | 0.02086 | 0.99795 | 0.66261 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9763 | 9763 | ERR3413869 | ERX3437515 | ERS3555997 | ERP116106 | PRJEB33323 | Deconstructing the individual steps of vertebrate translation initiation | ena-STUDY-Computational Biology Unit-03-07-2019-10:11:34:314-422 | Other | In eukaryotes the number of ribosomes synthesizing a given protein depends on how many are recruited to its mRNA their success in navigating its five prime untranslated region UTR and whether they recognize its start codon. Initiation of translation is a rate limiting step in protein synthesis and key to gene expression control 1 but despite this centrality it remains poorly understood 2 3. Here we introduce ribosome complex profiling RCP seq to capture the transcriptome wide occupancy of scanning initiating elongating and terminating ribosome complexes in a higher eukaryote. We track scanning and elongating ribosomes across all five prime UTRs in zebrafish which enable us to assess the individual regulatory contributions from the three stages of initiation: ribosome recruitment scanning of the five prime UTR and recognition of the start codon. Our data sheds light on small subunit recruitment to mRNAs presenting evidence for the threading model and demonstrates that sequence features regulate this recruitment. We estimate the processivity of scanning ribosomes as they traverse the five prime UTR and show that the repressive effects of upstream open reading frames depend on the efficiency of both translation initiation and termination. Finally we determine the optimal initiation contexts by directly estimating the conversion of scanning to elongating ribosomes and demonstrate specific regulation of translation initiation at the endoplasmic reticulum. Our results open for the possibility of deconvoluting translation initiation into separate stages and provides the first view of global occupancy of ribosomal small subunits in a vertebrate. | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 64 cell 1 | SAMEA5752538 | Computational Biology Unit | ENA FIRST PUBLIC:2020 03 27T17:04:59Z|ENA LAST UPDATE:2019 07 03T10:01:14Z|External Id:SAMEA5752538|INSDC center name:Computational Biology Unit|INSDC first public:2020 03 27T17:04:59Z|INSDC last update:2019 07 03T10:01:14Z|INSDC status:public|Submitter Id:1|common name:zebrafish|dev stage:64 cell|sample name:1|scientific name:Danio rerio | NextSeq 500 sequencing | ena EXPERIMENT Computational Biology Unit 03 07 2019 14:45:09:705 1 | 64 cell 1 SSU | None | RCP seq | OTHER | TRANSCRIPTOMIC | other | SINGLE | ILLUMINA | NextSeq 500 | ERP116106 | NextSeq 500 sequencing | ENA FIRST PUBLIC:2020 03 27|ENA LAST UPDATE:2019 07 03 | 10139466432.0 | 133414032.0 | ena RUN Computational Biology Unit 03 07 2019 14:45:09:705 1 | 0:76 | A:4628193785;C:2494821868;G:2485640988;T:530605907;N:203884 | 76 | 4628193785 | 2494821868 | 2485640988 | 530605907 | 203884 | ERX3437515 | ERS3555997 | ERA2028987 | Computational Biology Unit|European Nucleotide Archive | Computational Biology Unit | 1 | 0.06884 | 0.02526 | 0.99762 | 0.89856 | 76 | B | usable mapping rate | illumina | nextseq | unknown | other | unknown | bulk | unknown | unknown | Unknown | 2019-07-03 | Cleavage | Embryo | Undetermined | Embryo Imprecise | ||||||||||||||||||||||||
| 9764 | 9764 | ERR3454281 | ERX3476201 | ERS360451 | ERP116513 | PRJEB33700 | Regulation of Dot Icm effectors translocation by T4SS GGDEF EAL proteins in Legionella pneumophila | ena-STUDY-CIRI-Inserm-U1111-26-07-2019-08:05:36:132-1961 | Other | Legionella pneumophila is a waterborne bacterium that can replicate in a variety of host cells from environmental amoebae to human macrophages. Its virulence traits are subject to complex regulation that involves some signaling pathways dependent on cyclic di GMP. Cyclic di GMP is a second messenger that can result in transcriptional translational or post translational control of targets including secretion systems. We are particularly interested in the c di GMP metabolizing enzyme Lpl0780/Lpp0809 needed for the early steps of intracellular cycle and the appropriate translocation of bacterial effectors by Dot/Icm T4SS. Comparative transcriptomic analysis was performed from the RNA seq data of the Lens Wild Type strain and the ?lpl0780 mutant using DESeq2 package on normalized gene read counts. The results showed that only 12 genes among 2966 were significantly differentially expressed P < 0.01 and log2 fold change of >1 or < 1 between ?lpl0780 strain and the WT Lens strain. However the fold changes remain quite weak and moreover none of these genes can be connected to T4SS or effectors. These results suggest that Lpl0780/Lpp0809 acts at a post transcriptional level on the translocation of effectors. | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | SAMEA2224102 | SC | ArrayExpress DevelopmentalStage:Hatching long pec pec fin ZFS:0000033 ZFS:0000034|ArrayExpress OrganismPart:Whole Embryo|ArrayExpress Species:Danio rerio|ENA FIRST PUBLIC:2014 03 04T09:16:47Z|ENA LAST UPDATE:2018 03 08T16:47:37Z|External Id:SAMEA2224102|INSDC center name:SC|INSDC first public:2014 03 04T09:16:47Z|INSDC last update:2018 03 08T16:47:37Z|INSDC status:public|Submitter Id:ZMP phenotype 32 4 sibling sc 2013 10 17T10:16:28Z 1727409|common name:zebrafish|sample description:3 prime end enriched mRNA from morphologically normal embryos from ZMP phenotype 32 clutch 4. A 5 base indexing sequence CAAGA is bases 6 to 10 of read 1 followed by polyT. More information describing the mutant phenotype can be found at the Wellcome Trust Sanger Institute Zebrafish Mutation Project website http://www.sanger.ac.uk/cgi bin/Projects/D rerio/zmp/search.pl?q=zmp ph32|sample name:ZMP phenotype 32 4 sibling sc 2013 10 17T10:16:28Z 1727409|scientific name:Danio rerio|strain:mixed | Illumina HiSeq 2500 sequencing | ena EXPERIMENT CIRI Inserm U1111 26 07 2019 18:33:36:193 6 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | ERP116513 | Illumina HiSeq 2500 sequencing | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | 659815100.0 | 13196302.0 | ena RUN CIRI Inserm U1111 26 07 2019 18:33:36:193 6 | 0:50 | A:163494131;C:142490716;G:153472608;T:200319869;N:37776 | 50 | 163494131 | 142490716 | 153472608 | 200319869 | 37776 | ERX3476201 | ERS360451 | ERA2051096 | CIRI-Inserm-U1111|European Nucleotide Archive | CIRI-Inserm-U1111 | 1 | 0.00278 | 0.00206 | 0.99922 | 0.24031 | 50 | T | under 1.2% mapping rate | illumina | hiseq_era | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | France | 2014-03-04 | Hatching | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||||
| 9765 | 9765 | ERR3454280 | ERX3476200 | ERS360450 | ERP116513 | PRJEB33700 | Regulation of Dot Icm effectors translocation by T4SS GGDEF EAL proteins in Legionella pneumophila | ena-STUDY-CIRI-Inserm-U1111-26-07-2019-08:05:36:132-1961 | Other | Legionella pneumophila is a waterborne bacterium that can replicate in a variety of host cells from environmental amoebae to human macrophages. Its virulence traits are subject to complex regulation that involves some signaling pathways dependent on cyclic di GMP. Cyclic di GMP is a second messenger that can result in transcriptional translational or post translational control of targets including secretion systems. We are particularly interested in the c di GMP metabolizing enzyme Lpl0780/Lpp0809 needed for the early steps of intracellular cycle and the appropriate translocation of bacterial effectors by Dot/Icm T4SS. Comparative transcriptomic analysis was performed from the RNA seq data of the Lens Wild Type strain and the ?lpl0780 mutant using DESeq2 package on normalized gene read counts. The results showed that only 12 genes among 2966 were significantly differentially expressed P < 0.01 and log2 fold change of >1 or < 1 between ?lpl0780 strain and the WT Lens strain. However the fold changes remain quite weak and moreover none of these genes can be connected to T4SS or effectors. These results suggest that Lpl0780/Lpp0809 acts at a post transcriptional level on the translocation of effectors. | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | SAMEA2224101 | SC | ArrayExpress DevelopmentalStage:Hatching long pec pec fin ZFS:0000033 ZFS:0000034|ArrayExpress OrganismPart:Whole Embryo|ArrayExpress Species:Danio rerio|ENA FIRST PUBLIC:2014 03 04T09:16:47Z|ENA LAST UPDATE:2018 03 08T16:50:06Z|External Id:SAMEA2224101|INSDC center name:SC|INSDC first public:2014 03 04T09:16:47Z|INSDC last update:2018 03 08T16:50:06Z|INSDC status:public|Submitter Id:ZMP phenotype 32 4 mutant sc 2013 10 17T10:16:27Z 1727408|common name:zebrafish|sample description:3 prime end enriched mRNA from morphologically abnormal embryos from ZMP phenotype32 clutch 4. A 5 base indexing sequence CGCAA is bases 6 to 10 of read 1 followed by polyT. More information describing the mutant phenotype can be found at the Wellcome Trust Sanger Institute Zebrafish Mutation Project website http://www.sanger.ac.uk/cgi bin/Projects/D rerio/zmp/search.pl?q=zmp ph32|sample name:ZMP phenotype 32 4 mutant sc 2013 10 17T10:16:27Z 1727408|scientific name:Danio rerio|strain:mixed | Illumina HiSeq 2500 sequencing | ena EXPERIMENT CIRI Inserm U1111 26 07 2019 18:33:36:193 5 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | ERP116513 | Illumina HiSeq 2500 sequencing | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | 1031629900.0 | 20632598.0 | ena RUN CIRI Inserm U1111 26 07 2019 18:33:36:193 5 | 0:50 | A:266496533;C:234318648;G:214719546;T:316013013;N:82160 | 50 | 266496533 | 234318648 | 214719546 | 316013013 | 82160 | ERX3476200 | ERS360450 | ERA2051096 | CIRI-Inserm-U1111|European Nucleotide Archive | CIRI-Inserm-U1111 | 1 | 0.003 | 0.00187 | 0.99902 | 0.27272 | 50 | T | under 1.2% mapping rate | illumina | hiseq_era | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | France | 2014-03-04 | Hatching | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||||
| 9766 | 9766 | ERR3454279 | ERX3476199 | ERS360449 | ERP116513 | PRJEB33700 | Regulation of Dot Icm effectors translocation by T4SS GGDEF EAL proteins in Legionella pneumophila | ena-STUDY-CIRI-Inserm-U1111-26-07-2019-08:05:36:132-1961 | Other | Legionella pneumophila is a waterborne bacterium that can replicate in a variety of host cells from environmental amoebae to human macrophages. Its virulence traits are subject to complex regulation that involves some signaling pathways dependent on cyclic di GMP. Cyclic di GMP is a second messenger that can result in transcriptional translational or post translational control of targets including secretion systems. We are particularly interested in the c di GMP metabolizing enzyme Lpl0780/Lpp0809 needed for the early steps of intracellular cycle and the appropriate translocation of bacterial effectors by Dot/Icm T4SS. Comparative transcriptomic analysis was performed from the RNA seq data of the Lens Wild Type strain and the ?lpl0780 mutant using DESeq2 package on normalized gene read counts. The results showed that only 12 genes among 2966 were significantly differentially expressed P < 0.01 and log2 fold change of >1 or < 1 between ?lpl0780 strain and the WT Lens strain. However the fold changes remain quite weak and moreover none of these genes can be connected to T4SS or effectors. These results suggest that Lpl0780/Lpp0809 acts at a post transcriptional level on the translocation of effectors. | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | SAMEA2224100 | SC | ArrayExpress DevelopmentalStage:Hatching long pec pec fin ZFS:0000033 ZFS:0000034|ArrayExpress OrganismPart:Whole Embryo|ArrayExpress Species:Danio rerio|ENA FIRST PUBLIC:2014 03 04T09:16:47Z|ENA LAST UPDATE:2018 03 08T16:49:06Z|External Id:SAMEA2224100|INSDC center name:SC|INSDC first public:2014 03 04T09:16:47Z|INSDC last update:2018 03 08T16:49:06Z|INSDC status:public|Submitter Id:ZMP phenotype 32 3 sibling sc 2013 10 17T10:16:26Z 1727407|common name:zebrafish|sample description:3 prime end enriched mRNA from morphologically normal embryos from ZMP phenotype 32 clutch 3. A 5 base indexing sequence GCACG is bases 6 to 10 of read 1 followed by polyT. More information describing the mutant phenotype can be found at the Wellcome Trust Sanger Institute Zebrafish Mutation Project website http://www.sanger.ac.uk/cgi bin/Projects/D rerio/zmp/search.pl?q=zmp ph32|sample name:ZMP phenotype 32 3 sibling sc 2013 10 17T10:16:26Z 1727407|scientific name:Danio rerio|strain:mixed | Illumina HiSeq 2500 sequencing | ena EXPERIMENT CIRI Inserm U1111 26 07 2019 18:33:36:193 4 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | ERP116513 | Illumina HiSeq 2500 sequencing | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | 547730200.0 | 10954604.0 | ena RUN CIRI Inserm U1111 26 07 2019 18:33:36:193 4 | 0:50 | A:142048050;C:118592881;G:112867934;T:174179317;N:42018 | 50 | 142048050 | 118592881 | 112867934 | 174179317 | 42018 | ERX3476199 | ERS360449 | ERA2051096 | CIRI-Inserm-U1111|European Nucleotide Archive | CIRI-Inserm-U1111 | 1 | 0.00355 | 0.00226 | 0.99902 | 0.30487 | 50 | T | under 1.2% mapping rate | illumina | hiseq_era | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | France | 2014-03-04 | Hatching | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||||
| 9767 | 9767 | ERR3454278 | ERX3476198 | ERS360448 | ERP116513 | PRJEB33700 | Regulation of Dot Icm effectors translocation by T4SS GGDEF EAL proteins in Legionella pneumophila | ena-STUDY-CIRI-Inserm-U1111-26-07-2019-08:05:36:132-1961 | Other | Legionella pneumophila is a waterborne bacterium that can replicate in a variety of host cells from environmental amoebae to human macrophages. Its virulence traits are subject to complex regulation that involves some signaling pathways dependent on cyclic di GMP. Cyclic di GMP is a second messenger that can result in transcriptional translational or post translational control of targets including secretion systems. We are particularly interested in the c di GMP metabolizing enzyme Lpl0780/Lpp0809 needed for the early steps of intracellular cycle and the appropriate translocation of bacterial effectors by Dot/Icm T4SS. Comparative transcriptomic analysis was performed from the RNA seq data of the Lens Wild Type strain and the ?lpl0780 mutant using DESeq2 package on normalized gene read counts. The results showed that only 12 genes among 2966 were significantly differentially expressed P < 0.01 and log2 fold change of >1 or < 1 between ?lpl0780 strain and the WT Lens strain. However the fold changes remain quite weak and moreover none of these genes can be connected to T4SS or effectors. These results suggest that Lpl0780/Lpp0809 acts at a post transcriptional level on the translocation of effectors. | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | SAMEA2224099 | SC | ArrayExpress DevelopmentalStage:Hatching long pec pec fin ZFS:0000033 ZFS:0000034|ArrayExpress OrganismPart:Whole Embryo|ArrayExpress Species:Danio rerio|ENA FIRST PUBLIC:2014 03 04T09:16:47Z|ENA LAST UPDATE:2018 03 08T16:47:37Z|External Id:SAMEA2224099|INSDC center name:SC|INSDC first public:2014 03 04T09:16:47Z|INSDC last update:2018 03 08T16:47:37Z|INSDC status:public|Submitter Id:ZMP phenotype 32 3 mutant sc 2013 10 17T10:16:24Z 1727406|common name:zebrafish|sample description:3 prime end enriched mRNA from morphologically abnormal embryos from ZMP phenotype 32 clutch 3. A 5 base indexing sequence CAGAG is bases 6 to 10 of read 1 followed by polyT. More information describing the mutant phenotype can be found at the Wellcome Trust Sanger Institute Zebrafish Mutation Project website http://www.sanger.ac.uk/cgi bin/Projects/D rerio/zmp/search.pl?q=zmp ph32|sample name:ZMP phenotype 32 3 mutant sc 2013 10 17T10:16:24Z 1727406|scientific name:Danio rerio|strain:mixed | Illumina HiSeq 2500 sequencing | ena EXPERIMENT CIRI Inserm U1111 26 07 2019 18:33:36:193 3 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | ERP116513 | Illumina HiSeq 2500 sequencing | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | 844323050.0 | 16886461.0 | ena RUN CIRI Inserm U1111 26 07 2019 18:33:36:193 3 | 0:50 | A:219263127;C:181661743;G:173433057;T:269898556;N:66567 | 50 | 219263127 | 181661743 | 173433057 | 269898556 | 66567 | ERX3476198 | ERS360448 | ERA2051096 | CIRI-Inserm-U1111|European Nucleotide Archive | CIRI-Inserm-U1111 | 1 | 0.00523 | 0.00319 | 0.99892 | 0.2637 | 50 | T | under 1.2% mapping rate | illumina | hiseq_era | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | France | 2014-03-04 | Hatching | Embryo | Whole Organism | All anatomical structures | ||||||||||||||||||||||||||
| 9768 | 9768 | ERR3454277 | ERX3476197 | ERS360447 | ERP116513 | PRJEB33700 | Regulation of Dot Icm effectors translocation by T4SS GGDEF EAL proteins in Legionella pneumophila | ena-STUDY-CIRI-Inserm-U1111-26-07-2019-08:05:36:132-1961 | Other | Legionella pneumophila is a waterborne bacterium that can replicate in a variety of host cells from environmental amoebae to human macrophages. Its virulence traits are subject to complex regulation that involves some signaling pathways dependent on cyclic di GMP. Cyclic di GMP is a second messenger that can result in transcriptional translational or post translational control of targets including secretion systems. We are particularly interested in the c di GMP metabolizing enzyme Lpl0780/Lpp0809 needed for the early steps of intracellular cycle and the appropriate translocation of bacterial effectors by Dot/Icm T4SS. Comparative transcriptomic analysis was performed from the RNA seq data of the Lens Wild Type strain and the ?lpl0780 mutant using DESeq2 package on normalized gene read counts. The results showed that only 12 genes among 2966 were significantly differentially expressed P < 0.01 and log2 fold change of >1 or < 1 between ?lpl0780 strain and the WT Lens strain. However the fold changes remain quite weak and moreover none of these genes can be connected to T4SS or effectors. These results suggest that Lpl0780/Lpp0809 acts at a post transcriptional level on the translocation of effectors. | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | SAMEA2224098 | SC | ArrayExpress DevelopmentalStage:Hatching long pec pec fin ZFS:0000033 ZFS:0000034|ArrayExpress OrganismPart:Whole Embryo|ArrayExpress Species:Danio rerio|ENA FIRST PUBLIC:2014 03 04T09:16:47Z|ENA LAST UPDATE:2018 03 08T16:50:06Z|External Id:SAMEA2224098|INSDC center name:SC|INSDC first public:2014 03 04T09:16:47Z|INSDC last update:2018 03 08T16:50:06Z|INSDC status:public|Submitter Id:ZMP phenotype 32 2 sibling sc 2013 10 17T10:16:23Z 1727405|common name:zebrafish|sample description:3 prime end enriched mRNA from morphologically normal embryos from ZMP phenotype 32 clutch 2. A 5 base indexing sequence AGAAG is bases 6 to 10 of read 1 followed by polyT. More information describing the mutant phenotype can be found at the Wellcome Trust Sanger Institute Zebrafish Mutation Project website http://www.sanger.ac.uk/cgi bin/Projects/D rerio/zmp/search.pl?q=zmp ph32|sample name:ZMP phenotype 32 2 sibling sc 2013 10 17T10:16:23Z 1727405|scientific name:Danio rerio|strain:mixed | Illumina HiSeq 2500 sequencing | ena EXPERIMENT CIRI Inserm U1111 26 07 2019 18:33:36:193 2 | unspecified | 1 | RNA-Seq | TRANSCRIPTOMIC | cDNA | SINGLE | ILLUMINA | Illumina HiSeq 2500 | ERP116513 | Illumina HiSeq 2500 sequencing | ENA FIRST PUBLIC:2019 09 25|ENA LAST UPDATE:2019 07 26 | 600000000.0 | 12000000.0 | ena RUN CIRI Inserm U1111 26 07 2019 18:33:36:193 2 | 0:50 | A:153130383;C:136248892;G:127363796;T:183213089;N:43840 | 50 | 153130383 | 136248892 | 127363796 | 183213089 | 43840 | ERX3476197 | ERS360447 | ERA2051096 | CIRI-Inserm-U1111|European Nucleotide Archive | CIRI-Inserm-U1111 | 1 | 0.00372 | 0.00211 | 0.99888 | 0.31649 | 50 | T | under 1.2% mapping rate | illumina | hiseq_era | 3prime | cdna_unspecified | unknown | bulk | unknown | unknown | France | 2014-03-04 | Hatching | Embryo | Whole Organism | All anatomical structures |
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CREATE TABLE run_metadata("run.accession" VARCHAR, "experiment.accession" VARCHAR, "sample.accession" VARCHAR, "study.accession" VARCHAR, bioproject VARCHAR, "study.title" VARCHAR, "study.alias" VARCHAR, "study.type" VARCHAR, "study.abstract" VARCHAR, "study.attributes" VARCHAR, "study.PMIDs" VARCHAR, "sample.description" VARCHAR, "sample.title" VARCHAR, "sample.alias" VARCHAR, "sample.centername" VARCHAR, "sample.attributes" VARCHAR, "GEOsample.title" VARCHAR, "GEOsample.dataprocessing" VARCHAR, "GEOsample.source" VARCHAR, "GEOsample.treatmentprotocol" VARCHAR, "GEOsample.extractprotocol" VARCHAR, "GEOsample.growthprotocol" VARCHAR, "GEOsample.characteristics" VARCHAR, "GEOsample.accession" VARCHAR, "experiment.title" VARCHAR, "experiment.alias" VARCHAR, "experiment.library_name" VARCHAR, "experiment.design_description" VARCHAR, "experiment.library_construction_protocol" VARCHAR, "experiment.attributes" VARCHAR, "experiment.library_strategy" VARCHAR, "experiment.library_source" VARCHAR, "experiment.library_selection" VARCHAR, "experiment.library_layout" VARCHAR, "experiment.platform" VARCHAR, "experiment.instrument_model" VARCHAR, "experiment.spot_descriptor" VARCHAR, "experiment.study_ref" VARCHAR, "run.title" VARCHAR, "run.attributes" VARCHAR, "run.filename" VARCHAR, "run.semantic_name" VARCHAR, "run.total_bases" DOUBLE, "run.total_spots" DOUBLE, "run.alias" VARCHAR, "run.read_lengths" VARCHAR, "run.base_counts" VARCHAR, "run.r1_length" BIGINT, "run.r2_length" BIGINT, "run.r3_length" BIGINT, "run.r4_length" BIGINT, "run.Acount" BIGINT, "run.Ccount" BIGINT, "run.Gcount" BIGINT, "run.Tcount" BIGINT, "run.Ncount" BIGINT, "run.experiment" VARCHAR, "run.pool_member" VARCHAR, "submission.accession" VARCHAR, "submission.srasource" VARCHAR, "submission.bioprojectsource" VARCHAR, "seqdetective.n_mates" BIGINT, "seqdetective.mapping_rate.mate1" DOUBLE, "seqdetective.mapping_rate.mate2" DOUBLE, "seqdetective.nofeature_rate.mate1" DOUBLE, "seqdetective.nofeature_rate.mate2" DOUBLE, "seqdetective.sparsity.mate1" DOUBLE, "seqdetective.sparsity.mate2" DOUBLE, "seqdetective.pos_strand_rate.mate1" DOUBLE, "seqdetective.pos_strand_rate.mate2" DOUBLE, "seqdetective.readlen.mate1" BIGINT, "seqdetective.readlen.mate2" BIGINT, "seqdetective.judgement.mate1" VARCHAR, "seqdetective.judgement.mate2" VARCHAR, "seqdetective.judgement.reason" VARCHAR, platform_family VARCHAR, instrument_generation VARCHAR, read_bias VARCHAR, selection_class VARCHAR, prep_kit VARCHAR, sc_or_bulk VARCHAR, tech_class VARCHAR, technology VARCHAR, tech_variant VARCHAR, "submission.bioprojectsource.country" VARCHAR, earliest_date DATE, devstage_curation VARCHAR, devstage_curation_coarse VARCHAR, tissue_curation VARCHAR, tissue_curation_coarse VARCHAR);;
CREATE INDEX idx_run_bioproject ON run_metadata(bioproject);;
CREATE INDEX idx_run_run_accession ON run_metadata("run.accession");;