{"database": "metadata", "table": "run_metadata", "is_view": false, "human_description_en": "where devstage_curation = \"Hatching\" and experiment.library_strategy = \"OTHER\"", "rows": [[33990, "SRR31030860", "SRX26416598", "SRS22936450", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES GAPDH Rep4 minus", "GSM8578751", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF NES GAPDH Rep4 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF", "GSM8578751", "GSM8578751: ZF NES GAPDH Rep4 minus; Danio rerio; OTHER", "GSM8578751 r1", "GSM8578751", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_GAPDH_Rep4_minus.R1.fq.gz ZF_NES_GAPDH_Rep4_minus.R2.fq.gz", "fastq fastq", 1100578200.0, 3668594.0, "GSM8578751 r1", "0:150 1:150", "A:287878221;C:249390946;G:265835736;T:297454600;N:18697", 150, 150, null, null, 287878221, 249390946, 265835736, 297454600, 18697, "SRX26416598", "SRS22936450", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [33991, "SRR31030861", "SRX26416597", "SRS22936451", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES GAPDH Rep3 plus", "GSM8578750", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF NES GAPDH Rep3 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. 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The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES GAPDH Rep3 minus", "GSM8578749", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF NES GAPDH Rep3 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF", "GSM8578749", "GSM8578749: ZF NES GAPDH Rep3 minus; Danio rerio; OTHER", "GSM8578749 r1", "GSM8578749", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. 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The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES GAPDH Rep2 plus", "GSM8578748", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF NES GAPDH Rep2 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. 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The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES GAPDH Rep2 minus", "GSM8578747", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF NES GAPDH Rep2 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. 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The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES GAPDH Rep1 plus", "GSM8578746", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF NES GAPDH Rep1 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. 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The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES GAPDH Rep1 minus", "GSM8578745", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF NES GAPDH Rep1 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. 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Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_GAPDH_Rep1_minus.R1.fq.gz ZF_NES_GAPDH_Rep1_minus.R2.fq.gz", "fastq fastq", 911747100.0, 3039157.0, "GSM8578745 r1", "0:150 1:150", "A:239833349;C:205185786;G:218897710;T:247814511;N:15744", 150, 150, null, null, 239833349, 205185786, 218897710, 247814511, 15744, "SRX26416592", "SRS22936445", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [33997, "SRR31030867", "SRX26416591", "SRS22936444", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B MALAT1 Rep4 plus", "GSM8578744", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF H2B MALAT1 Rep4 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF", "GSM8578744", "GSM8578744: ZF H2B MALAT1 Rep4 plus; Danio rerio; OTHER", "GSM8578744 r1", "GSM8578744", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_MALAT1_Rep4_plus.R1.fq.gz ZF_H2B_MALAT1_Rep4_plus.R2.fq.gz", "fastq fastq", 842103300.0, 2807011.0, "GSM8578744 r1", "0:150 1:150", "A:204870477;C:222752099;G:215404135;T:199062275;N:14314", 150, 150, null, null, 204870477, 222752099, 215404135, 199062275, 14314, "SRX26416591", "SRS22936444", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [33998, "SRR31030868", "SRX26416590", "SRS22936442", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B MALAT1 Rep4 minus", "GSM8578743", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF H2B MALAT1 Rep4 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF", "GSM8578743", "GSM8578743: ZF H2B MALAT1 Rep4 minus; Danio rerio; OTHER", "GSM8578743 r1", "GSM8578743", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_MALAT1_Rep4_minus.R1.fq.gz ZF_H2B_MALAT1_Rep4_minus.R2.fq.gz", "fastq fastq", 1166375100.0, 3887917.0, "GSM8578743 r1", "0:150 1:150", "A:283781955;C:308660466;G:298298204;T:275614377;N:20098", 150, 150, null, null, 283781955, 308660466, 298298204, 275614377, 20098, "SRX26416590", "SRS22936442", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [33999, "SRR31030869", "SRX26416589", "SRS22936443", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B MALAT1 Rep3 plus", "GSM8578742", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF H2B MALAT1 Rep3 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF", "GSM8578742", "GSM8578742: ZF H2B MALAT1 Rep3 plus; Danio rerio; OTHER", "GSM8578742 r1", "GSM8578742", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_MALAT1_Rep3_plus.R1.fq.gz ZF_H2B_MALAT1_Rep3_plus.R2.fq.gz", "fastq fastq", 1159439400.0, 3864798.0, "GSM8578742 r1", "0:150 1:150", "A:282055391;C:306842216;G:296569227;T:273952570;N:19996", 150, 150, null, null, 282055391, 306842216, 296569227, 273952570, 19996, "SRX26416589", "SRS22936443", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34000, "SRR31030870", "SRX26416588", "SRS22936440", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B MALAT1 Rep3 minus", "GSM8578741", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF H2B MALAT1 Rep3 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF", "GSM8578741", "GSM8578741: ZF H2B MALAT1 Rep3 minus; Danio rerio; OTHER", "GSM8578741 r1", "GSM8578741", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_MALAT1_Rep3_minus.R1.fq.gz ZF_H2B_MALAT1_Rep3_minus.R2.fq.gz", "fastq fastq", 1008297600.0, 3360992.0, "GSM8578741 r1", "0:150 1:150", "A:245277585;C:266840408;G:257911846;T:238251305;N:16456", 150, 150, null, null, 245277585, 266840408, 257911846, 238251305, 16456, "SRX26416588", "SRS22936440", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34001, "SRR31030871", "SRX26416587", "SRS22936441", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B MALAT1 Rep2 plus", "GSM8578740", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF H2B MALAT1 Rep2 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF", "GSM8578740", "GSM8578740: ZF H2B MALAT1 Rep2 plus; Danio rerio; OTHER", "GSM8578740 r1", "GSM8578740", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_MALAT1_Rep2_plus.R1.fq.gz ZF_H2B_MALAT1_Rep2_plus.R2.fq.gz", "fastq fastq", 1419263400.0, 4730878.0, "GSM8578740 r1", "0:150 1:150", "A:345302268;C:375591885;G:362956395;T:335387828;N:25024", 150, 150, null, null, 345302268, 375591885, 362956395, 335387828, 25024, "SRX26416587", "SRS22936441", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34002, "SRR31030872", "SRX26416586", "SRS22936439", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B MALAT1 Rep2 minus", "GSM8578739", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF H2B MALAT1 Rep2 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF", "GSM8578739", "GSM8578739: ZF H2B MALAT1 Rep2 minus; Danio rerio; OTHER", "GSM8578739 r1", "GSM8578739", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_MALAT1_Rep2_minus.R1.fq.gz ZF_H2B_MALAT1_Rep2_minus.R2.fq.gz", "fastq fastq", 1249910700.0, 4166369.0, "GSM8578739 r1", "0:150 1:150", "A:304074828;C:330741431;G:319677748;T:295395235;N:21458", 150, 150, null, null, 304074828, 330741431, 319677748, 295395235, 21458, "SRX26416586", "SRS22936439", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34003, "SRR31030873", "SRX26416585", "SRS22936438", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B MALAT1 Rep1 plus", "GSM8578738", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF H2B MALAT1 Rep1 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF", "GSM8578738", "GSM8578738: ZF H2B MALAT1 Rep1 plus; Danio rerio; OTHER", "GSM8578738 r1", "GSM8578738", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_MALAT1_Rep1_plus.R1.fq.gz ZF_H2B_MALAT1_Rep1_plus.R2.fq.gz", "fastq fastq", 1257872700.0, 4192909.0, "GSM8578738 r1", "0:150 1:150", "A:306022947;C:332851039;G:321699513;T:297277788;N:21413", 150, 150, null, null, 306022947, 332851039, 321699513, 297277788, 21413, "SRX26416585", "SRS22936438", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34004, "SRR31030874", "SRX26416584", "SRS22936437", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B MALAT1 Rep1 minus", "GSM8578737", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF H2B MALAT1 Rep1 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF", "GSM8578737", "GSM8578737: ZF H2B MALAT1 Rep1 minus; Danio rerio; OTHER", "GSM8578737 r1", "GSM8578737", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_MALAT1_Rep1_minus.R1.fq.gz ZF_H2B_MALAT1_Rep1_minus.R2.fq.gz", "fastq fastq", 1377040200.0, 4590134.0, "GSM8578737 r1", "0:150 1:150", "A:335021330;C:364359707;G:352178356;T:325457746;N:23061", 150, 150, null, null, 335021330, 364359707, 352178356, 325457746, 23061, "SRX26416584", "SRS22936437", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34005, "SRR31030875", "SRX26416583", "SRS22936435", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B GAPDH Rep4 plus", "GSM8578736", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF H2B GAPDH Rep4 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF", "GSM8578736", "GSM8578736: ZF H2B GAPDH Rep4 plus; Danio rerio; OTHER", "GSM8578736 r1", "GSM8578736", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_GAPDH_Rep4_plus.R1.fq.gz ZF_H2B_GAPDH_Rep4_plus.R2.fq.gz", "fastq fastq", 1051103100.0, 3503677.0, "GSM8578736 r1", "0:150 1:150", "A:274220771;C:238733668;G:254670769;T:283460283;N:17609", 150, 150, null, null, 274220771, 238733668, 254670769, 283460283, 17609, "SRX26416583", "SRS22936435", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate1-mate2 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34006, "SRR31030876", "SRX26416582", "SRS22936436", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B GAPDH Rep4 minus", "GSM8578735", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF H2B GAPDH Rep4 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF", "GSM8578735", "GSM8578735: ZF H2B GAPDH Rep4 minus; Danio rerio; OTHER", "GSM8578735 r1", "GSM8578735", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_GAPDH_Rep4_minus.R1.fq.gz ZF_H2B_GAPDH_Rep4_minus.R2.fq.gz", "fastq fastq", 1206485700.0, 4021619.0, "GSM8578735 r1", "0:150 1:150", "A:314740194;C:274101014;G:292357972;T:325267132;N:19388", 150, 150, null, null, 314740194, 274101014, 292357972, 325267132, 19388, "SRX26416582", "SRS22936436", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate1-mate2 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34007, "SRR31030877", "SRX26416581", "SRS22936434", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B GAPDH Rep3 plus", "GSM8578734", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF H2B GAPDH Rep3 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF", "GSM8578734", "GSM8578734: ZF H2B GAPDH Rep3 plus; Danio rerio; OTHER", "GSM8578734 r1", "GSM8578734", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_GAPDH_Rep3_plus.R1.fq.gz ZF_H2B_GAPDH_Rep3_plus.R2.fq.gz", "fastq fastq", 1140550200.0, 3801834.0, "GSM8578734 r1", "0:150 1:150", "A:297636297;C:258828826;G:276373993;T:307692213;N:18871", 150, 150, null, null, 297636297, 258828826, 276373993, 307692213, 18871, "SRX26416581", "SRS22936434", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate1-mate2 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34008, "SRR31030878", "SRX26416580", "SRS22936433", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B GAPDH Rep3 minus", "GSM8578733", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF H2B GAPDH Rep3 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF", "GSM8578733", "GSM8578733: ZF H2B GAPDH Rep3 minus; Danio rerio; OTHER", "GSM8578733 r1", "GSM8578733", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_GAPDH_Rep3_minus.R1.fq.gz ZF_H2B_GAPDH_Rep3_minus.R2.fq.gz", "fastq fastq", 782406600.0, 2608022.0, "GSM8578733 r1", "0:150 1:150", "A:204132316;C:177696721;G:189675433;T:210888939;N:13191", 150, 150, null, null, 204132316, 177696721, 189675433, 210888939, 13191, "SRX26416580", "SRS22936433", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate1-mate2 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34009, "SRR31030879", "SRX26416579", "SRS22936431", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B GAPDH Rep2 plus", "GSM8578732", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF H2B GAPDH Rep2 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF", "GSM8578732", "GSM8578732: ZF H2B GAPDH Rep2 plus; Danio rerio; OTHER", "GSM8578732 r1", "GSM8578732", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_GAPDH_Rep2_plus.R1.fq.gz ZF_H2B_GAPDH_Rep2_plus.R2.fq.gz", "fastq fastq", 958297200.0, 3194324.0, "GSM8578732 r1", "0:150 1:150", "A:250011335;C:217600823;G:232206339;T:258462392;N:16311", 150, 150, null, null, 250011335, 217600823, 232206339, 258462392, 16311, "SRX26416579", "SRS22936431", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate1-mate2 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34010, "SRR31030880", "SRX26416578", "SRS22936432", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B GAPDH Rep2 minus", "GSM8578731", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF H2B GAPDH Rep2 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF", "GSM8578731", "GSM8578731: ZF H2B GAPDH Rep2 minus; Danio rerio; OTHER", "GSM8578731 r1", "GSM8578731", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_GAPDH_Rep2_minus.R1.fq.gz ZF_H2B_GAPDH_Rep2_minus.R2.fq.gz", "fastq fastq", 1020926700.0, 3403089.0, "GSM8578731 r1", "0:150 1:150", "A:266429488;C:231749424;G:247353147;T:275377720;N:16921", 150, 150, null, null, 266429488, 231749424, 247353147, 275377720, 16921, "SRX26416578", "SRS22936432", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate1-mate2 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34011, "SRR31030881", "SRX26416577", "SRS22936430", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B GAPDH Rep1 plus", "GSM8578730", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF H2B GAPDH Rep1 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:plus DBF", "GSM8578730", "GSM8578730: ZF H2B GAPDH Rep1 plus; Danio rerio; OTHER", "GSM8578730 r1", "GSM8578730", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_GAPDH_Rep1_plus.R1.fq.gz ZF_H2B_GAPDH_Rep1_plus.R2.fq.gz", "fastq fastq", 1134318600.0, 3781062.0, "GSM8578730 r1", "0:150 1:150", "A:295931335;C:257596481;G:274848790;T:305922827;N:19167", 150, 150, null, null, 295931335, 257596481, 274848790, 305922827, 19167, "SRX26416577", "SRS22936430", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate1-mate2 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34012, "SRR31030882", "SRX26416576", "SRS22936429", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF H2B GAPDH Rep1 minus", "GSM8578729", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF H2B GAPDH Rep1 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo H2B|treatment:minus DBF", "GSM8578729", "GSM8578729: ZF H2B GAPDH Rep1 minus; Danio rerio; OTHER", "GSM8578729 r1", "GSM8578729", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_H2B_GAPDH_Rep1_minus.R1.fq.gz ZF_H2B_GAPDH_Rep1_minus.R2.fq.gz", "fastq fastq", 752638800.0, 2508796.0, "GSM8578729 r1", "0:150 1:150", "A:196331185;C:170899863;G:182460258;T:202935049;N:12445", 150, 150, null, null, 196331185, 170899863, 182460258, 202935049, 12445, "SRX26416576", "SRS22936429", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate1-mate2 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34013, "SRR31031004", "SRX26416454", "SRS22936307", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb WT pDBF Rep3", "GSM8578770", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:wildtype|treatment:plus DBF|geo loc name:missing|collection date:missing", "Zeb WT pDBF Rep3", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:wildtype|treatment:plus DBF", "GSM8578770", "GSM8578770: Zeb WT pDBF Rep3; Danio rerio; OTHER", "GSM8578770 r1", "GSM8578770", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_WT_pDBF_Rep3.R1.fq.gz Zeb_WT_pDBF_Rep3.R2.fq.gz", "fastq fastq", 23216831100.0, 77389437.0, "GSM8578770 r1", "0:150 1:150", "A:7577896837;C:3508911439;G:4823311862;T:7306393244;N:317718", 150, 150, null, null, 7577896837, 3508911439, 4823311862, 7306393244, 317718, "SRX26416454", "SRS22936307", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34014, "SRR31031005", "SRX26416453", "SRS22936305", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb WT pDBF Rep2", "GSM8578769", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:wildtype|treatment:plus DBF|geo loc name:missing|collection date:missing", "Zeb WT pDBF Rep2", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:wildtype|treatment:plus DBF", "GSM8578769", "GSM8578769: Zeb WT pDBF Rep2; Danio rerio; OTHER", "GSM8578769 r1", "GSM8578769", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_WT_pDBF_Rep2.R1.fq.gz Zeb_WT_pDBF_Rep2.R2.fq.gz", "fastq fastq", 27237049500.0, 90790165.0, "GSM8578769 r1", "0:150 1:150", "A:8800724632;C:4062692793;G:5651432074;T:8721823175;N:376826", 150, 150, null, null, 8800724632, 4062692793, 5651432074, 8721823175, 376826, "SRX26416453", "SRS22936305", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34015, "SRR31031006", "SRX26416452", "SRS22936306", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb WT pDBF Rep1", "GSM8578768", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:wildtype|treatment:plus DBF|geo loc name:missing|collection date:missing", "Zeb WT pDBF Rep1", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:wildtype|treatment:plus DBF", "GSM8578768", "GSM8578768: Zeb WT pDBF Rep1; Danio rerio; OTHER", "GSM8578768 r1", "GSM8578768", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_WT_pDBF_Rep1.R1.fq.gz Zeb_WT_pDBF_Rep1.R2.fq.gz", "fastq fastq", 22364115300.0, 74547051.0, "GSM8578768 r1", "0:150 1:150", "A:7336106577;C:3346831944;G:4451536371;T:7229335436;N:304972", 150, 150, null, null, 7336106577, 3346831944, 4451536371, 7229335436, 304972, "SRX26416452", "SRS22936306", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34016, "SRR31031007", "SRX26416451", "SRS22936304", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb WT mDBF Rep3", "GSM8578767", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:wildtype|treatment:minus DBF|geo loc name:missing|collection date:missing", "Zeb WT mDBF Rep3", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:wildtype|treatment:minus DBF", "GSM8578767", "GSM8578767: Zeb WT mDBF Rep3; Danio rerio; OTHER", "GSM8578767 r1", "GSM8578767", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_WT_mDBF_Rep3.R1.fq.gz Zeb_WT_mDBF_Rep3.R2.fq.gz", "fastq fastq", 20112719100.0, 67042397.0, "GSM8578767 r1", "0:150 1:150", "A:6537370232;C:2924919118;G:3973928235;T:6676228153;N:273362", 150, 150, null, null, 6537370232, 2924919118, 3973928235, 6676228153, 273362, "SRX26416451", "SRS22936304", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34017, "SRR31031008", "SRX26416450", "SRS22936303", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb WT mDBF Rep2", "GSM8578766", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:wildtype|treatment:minus DBF|geo loc name:missing|collection date:missing", "Zeb WT mDBF Rep2", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:wildtype|treatment:minus DBF", "GSM8578766", "GSM8578766: Zeb WT mDBF Rep2; Danio rerio; OTHER", "GSM8578766 r1", "GSM8578766", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_WT_mDBF_Rep2.R1.fq.gz Zeb_WT_mDBF_Rep2.R2.fq.gz", "fastq fastq", 24839552100.0, 82798507.0, "GSM8578766 r1", "0:150 1:150", "A:8176074473;C:3715794630;G:4984816273;T:7962528150;N:338574", 150, 150, null, null, 8176074473, 3715794630, 4984816273, 7962528150, 338574, "SRX26416450", "SRS22936303", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34018, "SRR31031009", "SRX26416449", "SRS22936302", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb WT mDBF Rep1", "GSM8578765", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:wildtype|treatment:minus DBF|geo loc name:missing|collection date:missing", "Zeb WT mDBF Rep1", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:wildtype|treatment:minus DBF", "GSM8578765", "GSM8578765: Zeb WT mDBF Rep1; Danio rerio; OTHER", "GSM8578765 r1", "GSM8578765", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_WT_mDBF_Rep1.R1.fq.gz Zeb_WT_mDBF_Rep1.R2.fq.gz", "fastq fastq", 23029785600.0, 76765952.0, "GSM8578765 r1", "0:150 1:150", "A:7509388471;C:3438475939;G:4820328116;T:7261277960;N:315114", 150, 150, null, null, 7509388471, 3438475939, 4820328116, 7261277960, 315114, "SRX26416449", "SRS22936302", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34019, "SRR31031010", "SRX26416448", "SRS22936301", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb NES pDBF Rep2", "GSM8578764", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "Zeb NES pDBF Rep2", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF", "GSM8578764", "GSM8578764: Zeb NES pDBF Rep2; Danio rerio; OTHER", "GSM8578764 r1", "GSM8578764", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_NES_pDBF_Rep2.R1.fq.gz Zeb_NES_pDBF_Rep2.R2.fq.gz", "fastq fastq", 25465584900.0, 84885283.0, "GSM8578764 r1", "0:150 1:150", "A:7944190976;C:4330095891;G:5473069331;T:7718120992;N:107710", 150, 150, null, null, 7944190976, 4330095891, 5473069331, 7718120992, 107710, "SRX26416448", "SRS22936301", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34020, "SRR31031011", "SRX26416447", "SRS22936300", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb NES pDBF Rep1", "GSM8578763", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "Zeb NES pDBF Rep1", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF", "GSM8578763", "GSM8578763: Zeb NES pDBF Rep1; Danio rerio; OTHER", "GSM8578763 r1", "GSM8578763", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_NES_pDBF_Rep1.R1.fq.gz Zeb_NES_pDBF_Rep1.R2.fq.gz", "fastq fastq", 21107351400.0, 70357838.0, "GSM8578763 r1", "0:150 1:150", "A:6528579219;C:3620666961;G:4496642830;T:6461373643;N:88747", 150, 150, null, null, 6528579219, 3620666961, 4496642830, 6461373643, 88747, "SRX26416447", "SRS22936300", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34021, "SRR31031012", "SRX26416446", "SRS22936299", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb NES mDBF Rep2", "GSM8578762", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "Zeb NES mDBF Rep2", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF", "GSM8578762", "GSM8578762: Zeb NES mDBF Rep2; Danio rerio; OTHER", "GSM8578762 r1", "GSM8578762", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_NES_mDBF_Rep2.R1.fq.gz Zeb_NES_mDBF_Rep2.R2.fq.gz", "fastq fastq", 21542967300.0, 71809891.0, "GSM8578762 r1", "0:150 1:150", "A:6722613760;C:3654507931;G:4628076548;T:6537678084;N:90977", 150, 150, null, null, 6722613760, 3654507931, 4628076548, 6537678084, 90977, "SRX26416446", "SRS22936299", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34022, "SRR31031013", "SRX26416445", "SRS22936297", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "Zeb NES mDBF Rep1", "GSM8578761", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "Zeb NES mDBF Rep1", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF", "GSM8578761", "GSM8578761: Zeb NES mDBF Rep1; Danio rerio; OTHER", "GSM8578761 r1", "GSM8578761", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "Zeb_NES_mDBF_Rep1.R1.fq.gz Zeb_NES_mDBF_Rep1.R2.fq.gz", "fastq fastq", 23038870800.0, 76796236.0, "GSM8578761 r1", "0:150 1:150", "A:7216059153;C:3815899397;G:4909028200;T:7097787584;N:96466", 150, 150, null, null, 7216059153, 3815899397, 4909028200, 7097787584, 96466, "SRX26416445", "SRS22936297", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "mate2-mate1 similar by mapping diff", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34023, "SRR31031014", "SRX26416444", "SRS22936298", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES MALAT1 Rep4 plus", "GSM8578760", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF NES MALAT1 Rep4 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF", "GSM8578760", "GSM8578760: ZF NES MALAT1 Rep4 plus; Danio rerio; OTHER", "GSM8578760 r1", "GSM8578760", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_MALAT1_Rep4_plus.R1.fq.gz ZF_NES_MALAT1_Rep4_plus.R2.fq.gz", "fastq fastq", 1091293200.0, 3637644.0, "GSM8578760 r1", "0:150 1:150", "A:265519561;C:288647650;G:279105515;T:258001510;N:18964", 150, 150, null, null, 265519561, 288647650, 279105515, 258001510, 18964, "SRX26416444", "SRS22936298", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34024, "SRR31031015", "SRX26416443", "SRS22936296", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES MALAT1 Rep4 minus", "GSM8578759", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF NES MALAT1 Rep4 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF", "GSM8578759", "GSM8578759: ZF NES MALAT1 Rep4 minus; Danio rerio; OTHER", "GSM8578759 r1", "GSM8578759", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_MALAT1_Rep4_minus.R1.fq.gz ZF_NES_MALAT1_Rep4_minus.R2.fq.gz", "fastq fastq", 1395963600.0, 4653212.0, "GSM8578759 r1", "0:150 1:150", "A:339654289;C:369433701;G:356957685;T:329893853;N:24072", 150, 150, null, null, 339654289, 369433701, 356957685, 329893853, 24072, "SRX26416443", "SRS22936296", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34025, "SRR31031016", "SRX26416442", "SRS22936295", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES MALAT1 Rep3 plus", "GSM8578758", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF NES MALAT1 Rep3 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF", "GSM8578758", "GSM8578758: ZF NES MALAT1 Rep3 plus; Danio rerio; OTHER", "GSM8578758 r1", "GSM8578758", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_MALAT1_Rep3_plus.R1.fq.gz ZF_NES_MALAT1_Rep3_plus.R2.fq.gz", "fastq fastq", 1556195100.0, 5187317.0, "GSM8578758 r1", "0:150 1:150", "A:378553535;C:411730281;G:398086882;T:367797563;N:26839", 150, 150, null, null, 378553535, 411730281, 398086882, 367797563, 26839, "SRX26416442", "SRS22936295", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34026, "SRR31031017", "SRX26416441", "SRS22936294", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES MALAT1 Rep3 minus", "GSM8578757", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF NES MALAT1 Rep3 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF", "GSM8578757", "GSM8578757: ZF NES MALAT1 Rep3 minus; Danio rerio; OTHER", "GSM8578757 r1", "GSM8578757", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_MALAT1_Rep3_minus.R1.fq.gz ZF_NES_MALAT1_Rep3_minus.R2.fq.gz", "fastq fastq", 1511328900.0, 5037763.0, "GSM8578757 r1", "0:150 1:150", "A:367639521;C:400036694;G:386523395;T:357103340;N:25950", 150, 150, null, null, 367639521, 400036694, 386523395, 357103340, 25950, "SRX26416441", "SRS22936294", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34027, "SRR31031018", "SRX26416440", "SRS22936293", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES MALAT1 Rep2 plus", "GSM8578756", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF NES MALAT1 Rep2 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF", "GSM8578756", "GSM8578756: ZF NES MALAT1 Rep2 plus; Danio rerio; OTHER", "GSM8578756 r1", "GSM8578756", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_MALAT1_Rep2_plus.R1.fq.gz ZF_NES_MALAT1_Rep2_plus.R2.fq.gz", "fastq fastq", 1451137800.0, 4837126.0, "GSM8578756 r1", "0:150 1:150", "A:353052445;C:383981771;G:371154128;T:342925275;N:24181", 150, 150, null, null, 353052445, 383981771, 371154128, 342925275, 24181, "SRX26416440", "SRS22936293", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34028, "SRR31031019", "SRX26416439", "SRS22936292", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES MALAT1 Rep2 minus", "GSM8578755", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF NES MALAT1 Rep2 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF", "GSM8578755", "GSM8578755: ZF NES MALAT1 Rep2 minus; Danio rerio; OTHER", "GSM8578755 r1", "GSM8578755", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_MALAT1_Rep2_minus.R1.fq.gz ZF_NES_MALAT1_Rep2_minus.R2.fq.gz", "fastq fastq", 1286489400.0, 4288298.0, "GSM8578755 r1", "0:150 1:150", "A:312986127;C:340482608;G:329001591;T:303997982;N:21092", 150, 150, null, null, 312986127, 340482608, 329001591, 303997982, 21092, "SRX26416439", "SRS22936292", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34029, "SRR31031020", "SRX26416438", "SRS22936291", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES MALAT1 Rep1 plus", "GSM8578754", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF NES MALAT1 Rep1 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF", "GSM8578754", "GSM8578754: ZF NES MALAT1 Rep1 plus; Danio rerio; OTHER", "GSM8578754 r1", "GSM8578754", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_MALAT1_Rep1_plus.R1.fq.gz ZF_NES_MALAT1_Rep1_plus.R2.fq.gz", "fastq fastq", 1146380100.0, 3821267.0, "GSM8578754 r1", "0:150 1:150", "A:278826422;C:303464534;G:293239572;T:270830265;N:19307", 150, 150, null, null, 278826422, 303464534, 293239572, 270830265, 19307, "SRX26416438", "SRS22936291", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34030, "SRR31031021", "SRX26416437", "SRS22936289", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES MALAT1 Rep1 minus", "GSM8578753", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF|geo loc name:missing|collection date:missing", "ZF NES MALAT1 Rep1 minus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:minus DBF", "GSM8578753", "GSM8578753: ZF NES MALAT1 Rep1 minus; Danio rerio; OTHER", "GSM8578753 r1", "GSM8578753", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_MALAT1_Rep1_minus.R1.fq.gz ZF_NES_MALAT1_Rep1_minus.R2.fq.gz", "fastq fastq", 1149087000.0, 3830290.0, "GSM8578753 r1", "0:150 1:150", "A:279487473;C:304130198;G:293947979;T:271501018;N:20332", 150, 150, null, null, 279487473, 304130198, 293947979, 271501018, 20332, "SRX26416437", "SRS22936289", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [34031, "SRR31031022", "SRX26416436", "SRS22936290", "SRP539182", "PRJNA1174121", "Quantification of subcellular RNA localization through direct detection of RNA oxidation", "GSE279714", "Other", "Across cell types and organisms  thousands of RNAs display asymmetric subcellular distributions. The study of this process often requires quantifying abundances of specific RNAs at precise subcellular locations. To analyze subcellular transcriptomes  multiple proximity based techniques have been developed in which RNAs near a localized bait protein are specifically labeled  facilitating their biotinylation and purification. However  these complex methods are often laborious and require expensive enrichment reagents. To streamline the analysis of localized RNA populations  we developed Oxidation Induced Nucleotide Conversion sequencing OINC seq. In OINC seq  RNAs near a genetically encoded  localized bait protein are specifically oxidized in a photo controllable manner. These oxidation events are then directly detected and quantified using high throughput sequencing and our software package  PIGPEN  without xxx need for biotin mediated enrichment. We demonstrate that OINC seq can induce and quantify RNA oxidation with high specificity in a dose  and light dependent manner. We further show the spatial specificity of OINC seq by using it to quantify subcellular transcriptomes associated with the cytoplasm  ER  and the inner and outer membranes of mitochondria. Finally  using transgenic zebrafish  we demonstrate that OINC seq allows proximity mediated RNA labeling in live animals. In sum  OINC seq together with PIGPEN provide an accessible workflow for the analysis of localized RNAs across different biological systems. Overall design: Cells and tissues were treated with and without xxx that drive localized RNA oxidation at a variety of subcellular locations  including treatment with the singlet oxygen producer Halo DBF and treatment with green light to activate Halo DBF. The extent of oxidation was then calculated at the gene level using PIGPEN software.", null, "pubmed:39605352;pubmed:40037712", null, "ZF NES GAPDH Rep4 plus", "GSM8578752", null, "source name:2 dpf embryos|tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF|geo loc name:missing|collection date:missing", "ZF NES GAPDH Rep4 plus", "OINC seq Oxidation Induced Nucleotide Conversion sequencing Adapters were trimmed from reads using Cutadapt. RNA oxidation events as seen as mutations were quantified using PIGPEN https://github.com/TaliaferroLab/OINC seq Assembly: hg38 and GRCz11 Supplementary files format and content: Quantification of mutations in RNAseq data produced by PIGPEN.", "2 dpf embryos", null, "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", "HeLa cells were cultured in DMEM + pen/strep + 10% FBS. Zebrafish embryos were incubated at 28.5C in E3 medium.", "tissue:2 dpf embryos|genotype:Halo NES|treatment:plus DBF", "GSM8578752", "GSM8578752: ZF NES GAPDH Rep4 plus; Danio rerio; OTHER", "GSM8578752 r1", "GSM8578752", "1", "RNA was extracted using Trizol and DNase treated for 30 min at 37C. Single amplicon libraries were constructed using gene specific RT PCR. Whole transcriptome libraries were created using Lexogen Quantseq library kits.", null, "OTHER", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina NovaSeq 6000", null, "SRP539182", null, null, "ZF_NES_GAPDH_Rep4_plus.R1.fq.gz ZF_NES_GAPDH_Rep4_plus.R2.fq.gz", "fastq fastq", 1010253300.0, 3367511.0, "GSM8578752 r1", "0:150 1:150", "A:264284161;C:228880831;G:244038984;T:273032130;N:17194", 150, 150, null, null, 264284161, 228880831, 244038984, 273032130, 17194, "SRX26416436", "SRS22936290", "SRA1993027", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", "Biochemistry and Molecular Genetics, University of Colorado Anschutz Medical Campus", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "novaseq_era", "full_length", "random_priming", "lexogen", "bulk", "unknown", "unknown", null, "United States", "2024-10-17", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [35567, "SRR32928199", "SRX28203119", "SRS24552825", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using enzymatic digestion. This subpool was sequenced on a large number of cells in order to determine the cell number and diversity captured by the method.", null, "expt2.broad.48.enzymatic.P01.F01.fq.gz", null, "seq depth:broad many cells|Experiment id:2|dissociation method:enzymatic|replicate:6|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  broad sequencing of many cells at low depth  48hpf  enzymatic dissociation  replicate 6", "100", "100", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.broad.48.enzymatic.P01.F01.fq.gz", "fastq", 800436.0, 9529.0, "expt2.broad.48.enzymatic.P01.F01.fq.gz", "0:84", "A:247920;C:168170;G:180799;T:203153;N:394", 84, null, null, null, 247920, 168170, 180799, 203153, 394, "SRX28203119", "SRS24552825", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35568, "SRR32928200", "SRX28203118", "SRS24552823", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using enzymatic digestion. This subpool was sequenced on a large number of cells in order to determine the cell number and diversity captured by the method.", null, "expt2.broad.48.enzymatic.P01.E01.fq.gz", null, "seq depth:broad many cells|Experiment id:2|dissociation method:enzymatic|replicate:5|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  broad sequencing of many cells at low depth  48hpf  enzymatic dissociation  replicate 5", "99", "99", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.broad.48.enzymatic.P01.E01.fq.gz", "fastq", 496356.0, 5909.0, "expt2.broad.48.enzymatic.P01.E01.fq.gz", "0:84", "A:156600;C:99183;G:113282;T:127036;N:255", 84, null, null, null, 156600, 99183, 113282, 127036, 255, "SRX28203118", "SRS24552823", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35569, "SRR32928201", "SRX28203117", "SRS24552824", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using enzymatic digestion. This subpool was sequenced on a large number of cells in order to determine the cell number and diversity captured by the method.", null, "expt2.broad.48.enzymatic.P01.D01.fq.gz", null, "seq depth:broad many cells|Experiment id:2|dissociation method:enzymatic|replicate:4|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  broad sequencing of many cells at low depth  48hpf  enzymatic dissociation  replicate 4", "98", "98", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.broad.48.enzymatic.P01.D01.fq.gz", "fastq", 2053800.0, 24450.0, "expt2.broad.48.enzymatic.P01.D01.fq.gz", "0:84", "A:668634;C:393806;G:431279;T:559022;N:1059", 84, null, null, null, 668634, 393806, 431279, 559022, 1059, "SRX28203117", "SRS24552824", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35570, "SRR32928202", "SRX28203116", "SRS24552821", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using enzymatic digestion. This subpool was sequenced on a large number of cells in order to determine the cell number and diversity captured by the method.", null, "expt2.broad.48.enzymatic.P01.C01.fq.gz", null, "seq depth:broad many cells|Experiment id:2|dissociation method:enzymatic|replicate:3|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  broad sequencing of many cells at low depth  48hpf  enzymatic dissociation  replicate 3", "97", "97", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.broad.48.enzymatic.P01.C01.fq.gz", "fastq", 2159052.0, 25703.0, "expt2.broad.48.enzymatic.P01.C01.fq.gz", "0:84", "A:837784;C:348085;G:463530;T:508544;N:1109", 84, null, null, null, 837784, 348085, 463530, 508544, 1109, "SRX28203116", "SRS24552821", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35571, "SRR32928203", "SRX28203115", "SRS24552822", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using enzymatic digestion. This subpool was sequenced on a large number of cells in order to determine the cell number and diversity captured by the method.", null, "expt2.broad.48.enzymatic.P01.B01.fq.gz", null, "seq depth:broad many cells|Experiment id:2|dissociation method:enzymatic|replicate:2|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  broad sequencing of many cells at low depth  48hpf  enzymatic dissociation  replicate 2", "96", "96", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. 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Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using enzymatic digestion. This subpool was sequenced on a large number of cells in order to determine the cell number and diversity captured by the method.", null, "expt2.broad.48.enzymatic.P01.A01.fq.gz", null, "seq depth:broad many cells|Experiment id:2|dissociation method:enzymatic|replicate:1|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  broad sequencing of many cells at low depth  48hpf  enzymatic dissociation  replicate 1", "95", "95", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. 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Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using bead homogenization. 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Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using bead homogenization. This subpool was sequenced on a relatively smaller number of cells in order to determine the number of UMIs produced by the method.", null, "expt2.deep.48.bead.P18.B02.fq.gz", null, "seq depth:deep many umis|Experiment id:2|dissociation method:bead|replicate:4|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  deep sequencing of limited cells  48hpf  bead dissociation  replicate 4", "153", "153", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.deep.48.bead.P18.B02.fq.gz", "fastq", 190474200.0, 2267550.0, "expt2.deep.48.bead.P18.B02.fq.gz", "0:84", "A:71029855;C:33202220;G:39545818;T:46662820;N:33487", 84, null, null, null, 71029855, 33202220, 39545818, 46662820, 33487, "SRX28202943", "SRS24552650", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35744, "SRR32928376", "SRX28202942", "SRS24552647", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using bead homogenization. This subpool was sequenced on a relatively smaller number of cells in order to determine the number of UMIs produced by the method.", null, "expt2.deep.48.bead.P18.B01.fq.gz", null, "seq depth:deep many umis|Experiment id:2|dissociation method:bead|replicate:3|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  deep sequencing of limited cells  48hpf  bead dissociation  replicate 3", "152", "152", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.deep.48.bead.P18.B01.fq.gz", "fastq", 75929112.0, 903918.0, "expt2.deep.48.bead.P18.B01.fq.gz", "0:84", "A:26148298;C:13739979;G:15434234;T:20593156;N:13445", 84, null, null, null, 26148298, 13739979, 15434234, 20593156, 13445, "SRX28202942", "SRS24552647", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35745, "SRR32928377", "SRX28202941", "SRS24552648", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using bead homogenization. This subpool was sequenced on a relatively smaller number of cells in order to determine the number of UMIs produced by the method.", null, "expt2.deep.48.bead.P18.A02.fq.gz", null, "seq depth:deep many umis|Experiment id:2|dissociation method:bead|replicate:2|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  deep sequencing of limited cells  48hpf  bead dissociation  replicate 2", "151", "151", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.deep.48.bead.P18.A02.fq.gz", "fastq", 219828672.0, 2617008.0, "expt2.deep.48.bead.P18.A02.fq.gz", "0:84", "A:81458419;C:39095194;G:44843467;T:54392911;N:38681", 84, null, null, null, 81458419, 39095194, 44843467, 54392911, 38681, "SRX28202941", "SRS24552648", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35747, "SRR32928379", "SRX28202939", "SRS24552645", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using bead homogenization. This subpool was sequenced on a relatively smaller number of cells in order to determine the number of UMIs produced by the method.", null, "expt2.deep.48.bead.P18.A01.fq.gz", null, "seq depth:deep many umis|Experiment id:2|dissociation method:bead|replicate:1|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  deep sequencing of limited cells  48hpf  bead dissociation  replicate 1", "150", "150", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.deep.48.bead.P18.A01.fq.gz", "fastq", 180104736.0, 2144104.0, "expt2.deep.48.bead.P18.A01.fq.gz", "0:84", "A:64321435;C:32186725;G:36429165;T:47135535;N:31876", 84, null, null, null, 64321435, 32186725, 36429165, 47135535, 31876, "SRX28202939", "SRS24552645", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35775, "SRR32928407", "SRX28202911", "SRS24552617", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using enzymatic digestion. This subpool was sequenced on a large number of cells in order to determine the cell number and diversity captured by the method.", null, "expt2.broad.48.enzymatic.P01.H01.fq.gz", null, "seq depth:broad many cells|Experiment id:2|dissociation method:enzymatic|replicate:8|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  broad sequencing of many cells at low depth  48hpf  enzymatic dissociation  replicate 8", "102", "102", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.broad.48.enzymatic.P01.H01.fq.gz", "fastq", 876960.0, 10440.0, "expt2.broad.48.enzymatic.P01.H01.fq.gz", "0:84", "A:281420;C:174297;G:191202;T:229580;N:461", 84, null, null, null, 281420, 174297, 191202, 229580, 461, "SRX28202911", "SRS24552617", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [35776, "SRR32928408", "SRX28202910", "SRS24552616", "SRP575522", "PRJNA1244443", "An improved  high yield method for isolating nuclei from individual zebrafish embryos for single nucleus RNA sequencing", "PRJNA1244443", "Other", "Zebrafish are an ideal system to study the effects of chemical  genetic  and environmental perturbations on development due to their high fecundity and fast growth. Recently  single cell sequencing has emerged as a powerful tool to measure the effect of these perturbations at a whole embryo scale. These types of experiments rely on the ability to isolate nuclei from a large number of individually barcoded zebrafish embryos in parallel. Here we report a method for efficiently isolating high quality nuclei from zebrafish embryos in a 96 well plate format by bead homogenization in a lysis buffer. Through head to head sciPlex RNA seq experiments  we demonstrate that this method represents a substantial improvement over enzymatic dissociation and that it is compatible with a wide range of developmental stages.", null, null, "Sci plexRNAseq of a 48hpf whole zebrafish embryo dissociated using enzymatic digestion. This subpool was sequenced on a large number of cells in order to determine the cell number and diversity captured by the method.", null, "expt2.broad.48.enzymatic.P01.G01.fq.gz", null, "seq depth:broad many cells|Experiment id:2|dissociation method:enzymatic|replicate:7|strain:AB|isolate:not applicable|breed:not applicable|cultivar:not applicable|ecotype:not applicable|age:48 hpf|dev stage:48 hpf|collection date:2024 01 31|geo loc name:USA:Washington  Seattle|sex:not collected|tissue:Whole Embryo|sample type:Whole organism|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "sciPlex RNAseq of whole Danio rerio embryos: expt2  broad sequencing of many cells at low depth  48hpf  enzymatic dissociation  replicate 7", "101", "101", "Libraries were generated using sciPlex RNAseq3 combinatorial indexing. Each fasta represents a sample split from a large multiplexed sequencing run. Cell IDs are in the header of each fastq.", null, null, "OTHER", "TRANSCRIPTOMIC SINGLE CELL", "other", "SINGLE", "ILLUMINA", "NextSeq 2000", null, "SRP575522", null, null, "expt2.broad.48.enzymatic.P01.G01.fq.gz", "fastq", 1091916.0, 12999.0, "expt2.broad.48.enzymatic.P01.G01.fq.gz", "0:84", "A:359969;C:219255;G:240901;T:271246;N:545", 84, null, null, null, 359969, 219255, 240901, 271246, 545, "SRX28202910", "SRS24552616", "SRA2104467", "University of Washington|Genome Sciences", "University of Washington", null, null, null, null, null, null, null, null, null, null, null, "B", null, "usable mapping rate", "illumina", "nextseq_v2", "unknown", "other", "unknown", "sc", "single_cell_generic", "generic-scrnaseq-only", null, "United States", "2025-03-31", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [36373, "SRR499871", "SRX148961", "SRS334490", "SRP013309", "PRJNA167302", "Transcriptomic profiles of zebrafish embryos exposed to silver nanoparticles  bulk and ions using HT SuperSAGE in a Illumina GA2 platform", "GSE38125", "Other", "Silver nanoparticles cause toxicity in exposed organisms and are an environmental health concern. The mechanisms of silver nanoparticle toxicity  however  remain unclear. We examined the effects of exposure to silver in nano   bulk  and ionic forms on zebrafish embryos Danio rerio using a Next Generation Sequencing approach in an Illumina platform High Throughput SuperSAGE. Significant alterations in gene expression were found for all treatments and many of the gene pathways affected  most notably those associated with oxidative phosphorylation and protein synthesis  overlapped strongly between the three treatments indicating similar mechanisms of toxicity for the three forms of silver studied. Changes in oxidative phosphorylation indicated a down regulation of this pathway at 24h of exposure  but with a recovery at 48h. This finding was consistent with a dose dependent decrease in oxygen consumption at 24h  but not at 48h  following exposure to silver ions. Overall  our data provide support for the hypothesis that the toxicity caused by silver nanoparticles is principally associated with bioavailable silver ions in exposed zebrafish embryos. These findings are important in the evaluation of the risk that silver particles may pose to exposed vertebrate organisms. Overall design: mRNA profiles of whole zebrafish embryos at 24 hpf and 48 hpf exposed to silver in nano  bulk and ionic forms were generated by deep sequencing using HT SuperSAGE Illumina GA2.", null, "pubmed:23758687", null, "Dre 48h silver ions", "GSM935123", null, "source name:Dre 48h silver ions|strain:wild type WIK strain|tissue:whole embryos|developmental stage:48 hpf|treatment:silver ions 0.25 \u00b5g/L of silver nitrate|barcode:GCGA", "Dre 48h silver ions", "FASTQ/A Barcode splitter from the FASTX Toolkit http://hannonlab.cshl.edu/fastx toolkit/download.html was used to separate the samples from each lane using the 4 base barcode. FASTQ to FASTA from the FASTX Toolkit was used to convert the fastq files to fasta files. FASTQ/A trimmer from the FASTX Toolkit was used to remove the barcodes the first 4 bases from the sequence. A Perl script was used to remove all bases post the last occurence of CATG NlaIII restriction site  used for sequence tag preparation in each of the sequences FASTX collapser was used to collapse the sequences and calculate the frequency of unique sequence tags unitags in each library Supplementary files format and content: tabulated text files include frequency of all unitags in the treatment library", "Dre 48h silver ions", "Stock solutions for Ag NP  Ag Bulk and silver nitrate were made up in ultrapure water  and sonicated for 1 h to ensure dispersal of the particles. Exposures were conducted in glass chambers  at 28+/  1\u00b0C with a 12h light: dark photoperiod. Immediately prior to the start of the exposures  glass chambers received 400 mL of ISO water  prepared according to OECD guidelines for zebrafish embryo experiments http://www.oecd.org/  containing 5 \u00b5g/L of 10nm Ag NP  5  \u00b5g/L of Ag Bulk or 0.25  \u00b5g/L of silver nitrate. A control chamber was set up containing water alone.  Solutions were replaced every 12h during the exposure period  and dead embryos were removed at the times of replacement of the exposure water. At 24h and 48h  3 pools of 50 embryos were removed from each exposure tank  immediately frozen in liquid nitrogen and stored at  80\u00b0C for analysis of gene expression. The experiment was terminated at 48 hpf.", "High throughput HT SuperSAGE libraries were prepared as described in Matsumura et al 2010  PLoS ONE 58:e12010. Samples were multiplexed on each lane of the Illumina flow cell.", "Adult WIK zebrafish were kept in the aquarium facilites at the University of Exeter according to the protocols described in Paull et al.  2008 Aquat Toxicol. 872:115 26. Fish were allowed to breed naturally and eggs were collected in glass egg chambers  approximately 1 hpf. Eggs were then cleaned and unfertilised embryos were removed prior to the exposures.", "strain:wild type WIK strain|tissue:whole embryos|developmental stage:48 hpf|treatment:silver ions 0.25 \u00b5g/L of silver nitrate|barcode:GCGA", "GSM935123", "GSM935123: Dre 48h silver ions; Danio rerio; OTHER", "GSM935123 1", "GSM935123: Dre 48h silver ions", "1", null, "GEO Accession:GSM935123", "OTHER", "TRANSCRIPTOMIC", "other", "SINGLE", "ILLUMINA", "Illumina Genome Analyzer II", "<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>", "SRP013309", null, null, "Dre_48h_ag.gz", "fastq", 85514364.0, 2375399.0, "GSM935123 r1", "0:36", "A:18075876;C:24481350;G:23393114;T:19494907;N:69117", 36, null, null, null, 18075876, 24481350, 23393114, 19494907, 69117, "SRX148961", "SRS334490", "SRA053074", "GEO", "van Aerle Lab, Biosciences, College of Life and Environmental Sciences, University of Exeter", 1, 0.11101, null, 0.00946, null, 0.96224, null, 0.6991, null, 36, null, "B", null, "usable mapping rate", "illumina", "early_illumina", "unknown", "other", "unknown", "bulk", "bulk", "bulk", null, "United Kingdom", "2012-05-22", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [36374, "SRR499870", "SRX148960", "SRS334489", "SRP013309", "PRJNA167302", "Transcriptomic profiles of zebrafish embryos exposed to silver nanoparticles  bulk and ions using HT SuperSAGE in a Illumina GA2 platform", "GSE38125", "Other", "Silver nanoparticles cause toxicity in exposed organisms and are an environmental health concern. The mechanisms of silver nanoparticle toxicity  however  remain unclear. We examined the effects of exposure to silver in nano   bulk  and ionic forms on zebrafish embryos Danio rerio using a Next Generation Sequencing approach in an Illumina platform High Throughput SuperSAGE. Significant alterations in gene expression were found for all treatments and many of the gene pathways affected  most notably those associated with oxidative phosphorylation and protein synthesis  overlapped strongly between the three treatments indicating similar mechanisms of toxicity for the three forms of silver studied. Changes in oxidative phosphorylation indicated a down regulation of this pathway at 24h of exposure  but with a recovery at 48h. This finding was consistent with a dose dependent decrease in oxygen consumption at 24h  but not at 48h  following exposure to silver ions. Overall  our data provide support for the hypothesis that the toxicity caused by silver nanoparticles is principally associated with bioavailable silver ions in exposed zebrafish embryos. These findings are important in the evaluation of the risk that silver particles may pose to exposed vertebrate organisms. Overall design: mRNA profiles of whole zebrafish embryos at 24 hpf and 48 hpf exposed to silver in nano  bulk and ionic forms were generated by deep sequencing using HT SuperSAGE Illumina GA2.", null, "pubmed:23758687", null, "Dre 48h silver bulk", "GSM935122", null, "source name:Dre 48h silver bulk|strain:wild type WIK strain|tissue:whole embryos|developmental stage:48 hpf|treatment:silver bulk 0.6 1.6\u00b5m; 5 \u00b5g/L|barcode:GCGC", "Dre 48h silver bulk", "FASTQ/A Barcode splitter from the FASTX Toolkit http://hannonlab.cshl.edu/fastx toolkit/download.html was used to separate the samples from each lane using the 4 base barcode. FASTQ to FASTA from the FASTX Toolkit was used to convert the fastq files to fasta files. FASTQ/A trimmer from the FASTX Toolkit was used to remove the barcodes the first 4 bases from the sequence. A Perl script was used to remove all bases post the last occurence of CATG NlaIII restriction site  used for sequence tag preparation in each of the sequences FASTX collapser was used to collapse the sequences and calculate the frequency of unique sequence tags unitags in each library Supplementary files format and content: tabulated text files include frequency of all unitags in the treatment library", "Dre 48h silver bulk", "Stock solutions for Ag NP  Ag Bulk and silver nitrate were made up in ultrapure water  and sonicated for 1 h to ensure dispersal of the particles. Exposures were conducted in glass chambers  at 28+/  1\u00b0C with a 12h light: dark photoperiod. Immediately prior to the start of the exposures  glass chambers received 400 mL of ISO water  prepared according to OECD guidelines for zebrafish embryo experiments http://www.oecd.org/  containing 5 \u00b5g/L of 10nm Ag NP  5  \u00b5g/L of Ag Bulk or 0.25  \u00b5g/L of silver nitrate. A control chamber was set up containing water alone.  Solutions were replaced every 12h during the exposure period  and dead embryos were removed at the times of replacement of the exposure water. At 24h and 48h  3 pools of 50 embryos were removed from each exposure tank  immediately frozen in liquid nitrogen and stored at  80\u00b0C for analysis of gene expression. The experiment was terminated at 48 hpf.", "High throughput HT SuperSAGE libraries were prepared as described in Matsumura et al 2010  PLoS ONE 58:e12010. Samples were multiplexed on each lane of the Illumina flow cell.", "Adult WIK zebrafish were kept in the aquarium facilites at the University of Exeter according to the protocols described in Paull et al.  2008 Aquat Toxicol. 872:115 26. Fish were allowed to breed naturally and eggs were collected in glass egg chambers  approximately 1 hpf. Eggs were then cleaned and unfertilised embryos were removed prior to the exposures.", "strain:wild type WIK strain|tissue:whole embryos|developmental stage:48 hpf|treatment:silver bulk 0.6 1.6\u00b5m; 5 \u00b5g/L|barcode:GCGC", "GSM935122", "GSM935122: Dre 48h silver bulk; Danio rerio; OTHER", "GSM935122 1", "GSM935122: Dre 48h silver bulk", "1", null, "GEO Accession:GSM935122", "OTHER", "TRANSCRIPTOMIC", "other", "SINGLE", "ILLUMINA", "Illumina Genome Analyzer II", "<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>", "SRP013309", null, null, "Dre_48h_bulk.gz", "fastq", 95750712.0, 2659742.0, "GSM935122 r1", "0:36", "A:17624901;C:29735122;G:26376026;T:21938121;N:76542", 36, null, null, null, 17624901, 29735122, 26376026, 21938121, 76542, "SRX148960", "SRS334489", "SRA053074", "GEO", "van Aerle Lab, Biosciences, College of Life and Environmental Sciences, University of Exeter", 1, 0.18319, null, 0.01693, null, 0.94391, null, 0.57004, null, 36, null, "B", null, "usable mapping rate", "illumina", "early_illumina", "unknown", "other", "unknown", "bulk", "bulk", "bulk", null, "United Kingdom", "2012-05-22", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [36375, "SRR499869", "SRX148959", "SRS334488", "SRP013309", "PRJNA167302", "Transcriptomic profiles of zebrafish embryos exposed to silver nanoparticles  bulk and ions using HT SuperSAGE in a Illumina GA2 platform", "GSE38125", "Other", "Silver nanoparticles cause toxicity in exposed organisms and are an environmental health concern. The mechanisms of silver nanoparticle toxicity  however  remain unclear. We examined the effects of exposure to silver in nano   bulk  and ionic forms on zebrafish embryos Danio rerio using a Next Generation Sequencing approach in an Illumina platform High Throughput SuperSAGE. Significant alterations in gene expression were found for all treatments and many of the gene pathways affected  most notably those associated with oxidative phosphorylation and protein synthesis  overlapped strongly between the three treatments indicating similar mechanisms of toxicity for the three forms of silver studied. Changes in oxidative phosphorylation indicated a down regulation of this pathway at 24h of exposure  but with a recovery at 48h. This finding was consistent with a dose dependent decrease in oxygen consumption at 24h  but not at 48h  following exposure to silver ions. Overall  our data provide support for the hypothesis that the toxicity caused by silver nanoparticles is principally associated with bioavailable silver ions in exposed zebrafish embryos. These findings are important in the evaluation of the risk that silver particles may pose to exposed vertebrate organisms. Overall design: mRNA profiles of whole zebrafish embryos at 24 hpf and 48 hpf exposed to silver in nano  bulk and ionic forms were generated by deep sequencing using HT SuperSAGE Illumina GA2.", null, "pubmed:23758687", null, "Dre 48h silver NP", "GSM935121", null, "source name:Dre 48h silver NP|strain:wild type WIK strain|tissue:whole embryos|developmental stage:48 hpf|treatment:silver nanoparticles 10nm; 5\u00b5g/L|barcode:GCTG", "Dre 48h silver NP", "FASTQ/A Barcode splitter from the FASTX Toolkit http://hannonlab.cshl.edu/fastx toolkit/download.html was used to separate the samples from each lane using the 4 base barcode. FASTQ to FASTA from the FASTX Toolkit was used to convert the fastq files to fasta files. FASTQ/A trimmer from the FASTX Toolkit was used to remove the barcodes the first 4 bases from the sequence. A Perl script was used to remove all bases post the last occurence of CATG NlaIII restriction site  used for sequence tag preparation in each of the sequences FASTX collapser was used to collapse the sequences and calculate the frequency of unique sequence tags unitags in each library Supplementary files format and content: tabulated text files include frequency of all unitags in the treatment library", "Dre 48h silver NP", "Stock solutions for Ag NP  Ag Bulk and silver nitrate were made up in ultrapure water  and sonicated for 1 h to ensure dispersal of the particles. Exposures were conducted in glass chambers  at 28+/  1\u00b0C with a 12h light: dark photoperiod. Immediately prior to the start of the exposures  glass chambers received 400 mL of ISO water  prepared according to OECD guidelines for zebrafish embryo experiments http://www.oecd.org/  containing 5 \u00b5g/L of 10nm Ag NP  5  \u00b5g/L of Ag Bulk or 0.25  \u00b5g/L of silver nitrate. A control chamber was set up containing water alone.  Solutions were replaced every 12h during the exposure period  and dead embryos were removed at the times of replacement of the exposure water. At 24h and 48h  3 pools of 50 embryos were removed from each exposure tank  immediately frozen in liquid nitrogen and stored at  80\u00b0C for analysis of gene expression. The experiment was terminated at 48 hpf.", "High throughput HT SuperSAGE libraries were prepared as described in Matsumura et al 2010  PLoS ONE 58:e12010. Samples were multiplexed on each lane of the Illumina flow cell.", "Adult WIK zebrafish were kept in the aquarium facilites at the University of Exeter according to the protocols described in Paull et al.  2008 Aquat Toxicol. 872:115 26. Fish were allowed to breed naturally and eggs were collected in glass egg chambers  approximately 1 hpf. Eggs were then cleaned and unfertilised embryos were removed prior to the exposures.", "strain:wild type WIK strain|tissue:whole embryos|developmental stage:48 hpf|treatment:silver nanoparticles 10nm; 5\u00b5g/L|barcode:GCTG", "GSM935121", "GSM935121: Dre 48h silver NP; Danio rerio; OTHER", "GSM935121 1", "GSM935121: Dre 48h silver NP", "1", null, "GEO Accession:GSM935121", "OTHER", "TRANSCRIPTOMIC", "other", "SINGLE", "ILLUMINA", "Illumina Genome Analyzer II", "<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>", "SRP013309", null, null, "Dre_48h_NP.gz", "fastq", 52931304.0, 1470314.0, "GSM935121 r1", "0:36", "A:10003539;C:15279729;G:14487570;T:13116768;N:43698", 36, null, null, null, 10003539, 15279729, 14487570, 13116768, 43698, "SRX148959", "SRS334488", "SRA053074", "GEO", "van Aerle Lab, Biosciences, College of Life and Environmental Sciences, University of Exeter", 1, 0.14206, null, 0.01226, null, 0.95477, null, 0.58652, null, 36, null, "B", null, "usable mapping rate", "illumina", "early_illumina", "unknown", "other", "unknown", "bulk", "bulk", "bulk", null, "United Kingdom", "2012-05-22", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [36376, "SRR499868", "SRX148958", "SRS334487", "SRP013309", "PRJNA167302", "Transcriptomic profiles of zebrafish embryos exposed to silver nanoparticles  bulk and ions using HT SuperSAGE in a Illumina GA2 platform", "GSE38125", "Other", "Silver nanoparticles cause toxicity in exposed organisms and are an environmental health concern. The mechanisms of silver nanoparticle toxicity  however  remain unclear. We examined the effects of exposure to silver in nano   bulk  and ionic forms on zebrafish embryos Danio rerio using a Next Generation Sequencing approach in an Illumina platform High Throughput SuperSAGE. Significant alterations in gene expression were found for all treatments and many of the gene pathways affected  most notably those associated with oxidative phosphorylation and protein synthesis  overlapped strongly between the three treatments indicating similar mechanisms of toxicity for the three forms of silver studied. Changes in oxidative phosphorylation indicated a down regulation of this pathway at 24h of exposure  but with a recovery at 48h. This finding was consistent with a dose dependent decrease in oxygen consumption at 24h  but not at 48h  following exposure to silver ions. Overall  our data provide support for the hypothesis that the toxicity caused by silver nanoparticles is principally associated with bioavailable silver ions in exposed zebrafish embryos. These findings are important in the evaluation of the risk that silver particles may pose to exposed vertebrate organisms. Overall design: mRNA profiles of whole zebrafish embryos at 24 hpf and 48 hpf exposed to silver in nano  bulk and ionic forms were generated by deep sequencing using HT SuperSAGE Illumina GA2.", null, "pubmed:23758687", null, "Dre 48h control", "GSM935120", null, "source name:Dre 48h control|strain:wild type WIK strain|tissue:whole embryos|developmental stage:48 hpf|treatment:control|barcode:GCTT", "Dre 48h control", "FASTQ/A Barcode splitter from the FASTX Toolkit http://hannonlab.cshl.edu/fastx toolkit/download.html was used to separate the samples from each lane using the 4 base barcode. FASTQ to FASTA from the FASTX Toolkit was used to convert the fastq files to fasta files. FASTQ/A trimmer from the FASTX Toolkit was used to remove the barcodes the first 4 bases from the sequence. A Perl script was used to remove all bases post the last occurence of CATG NlaIII restriction site  used for sequence tag preparation in each of the sequences FASTX collapser was used to collapse the sequences and calculate the frequency of unique sequence tags unitags in each library Supplementary files format and content: tabulated text files include frequency of all unitags in the treatment library", "Dre 48h control", "Stock solutions for Ag NP  Ag Bulk and silver nitrate were made up in ultrapure water  and sonicated for 1 h to ensure dispersal of the particles. Exposures were conducted in glass chambers  at 28+/  1\u00b0C with a 12h light: dark photoperiod. Immediately prior to the start of the exposures  glass chambers received 400 mL of ISO water  prepared according to OECD guidelines for zebrafish embryo experiments http://www.oecd.org/  containing 5 \u00b5g/L of 10nm Ag NP  5  \u00b5g/L of Ag Bulk or 0.25  \u00b5g/L of silver nitrate. A control chamber was set up containing water alone.  Solutions were replaced every 12h during the exposure period  and dead embryos were removed at the times of replacement of the exposure water. At 24h and 48h  3 pools of 50 embryos were removed from each exposure tank  immediately frozen in liquid nitrogen and stored at  80\u00b0C for analysis of gene expression. The experiment was terminated at 48 hpf.", "High throughput HT SuperSAGE libraries were prepared as described in Matsumura et al 2010  PLoS ONE 58:e12010. Samples were multiplexed on each lane of the Illumina flow cell.", "Adult WIK zebrafish were kept in the aquarium facilites at the University of Exeter according to the protocols described in Paull et al.  2008 Aquat Toxicol. 872:115 26. Fish were allowed to breed naturally and eggs were collected in glass egg chambers  approximately 1 hpf. Eggs were then cleaned and unfertilised embryos were removed prior to the exposures.", "strain:wild type WIK strain|tissue:whole embryos|developmental stage:48 hpf|treatment:control|barcode:GCTT", "GSM935120", "GSM935120: Dre 48h control; Danio rerio; OTHER", "GSM935120 1", "GSM935120: Dre 48h control", "1", null, "GEO Accession:GSM935120", "OTHER", "TRANSCRIPTOMIC", "other", "SINGLE", "ILLUMINA", "Illumina Genome Analyzer II", "<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>", "SRP013309", null, null, "Dre_48h_control.gz", "fastq", 75389652.0, 2094157.0, "GSM935120 r1", "0:36", "A:13252992;C:21927091;G:18790968;T:21232585;N:186016", 36, null, null, null, 13252992, 21927091, 18790968, 21232585, 186016, "SRX148958", "SRS334487", "SRA053074", "GEO", "van Aerle Lab, Biosciences, College of Life and Environmental Sciences, University of Exeter", 1, 0.12359, null, 0.01182, null, 0.95929, null, 0.56028, null, 36, null, "B", null, "usable mapping rate", "illumina", "early_illumina", "unknown", "other", "unknown", "bulk", "bulk", "bulk", null, "United Kingdom", "2012-05-22", "Hatching", "Embryo", "Whole Organism", "All anatomical structures"], [68502, "SRR18074848", "SRX14226378", "SRS12047703", "SRP358067", "PRJNA803151", "mRNA aging shapes the Cap2 methylome in mammalian mRNA", "GSE196043", "Other", "The mRNA cap structure is a major site of dynamic mRNA methylation.  mRNA caps exist in either the Cap1 or Cap2 form  depending on the presence of 2' O methylation on the first  or both the first and second transcribed nucleotide  respectively.  However  the identity of Cap2 containing mRNAs and the function of Cap2 are unclear.  Here we describe CLAM Cap Seq  a method for transcriptome wide mapping and quantification of Cap2.  We find that unlike other epitranscriptomic modifications  Cap2 can occur on all mRNAs.  Cap2 is formed through a slow continuous conversion of mRNAs from Cap1 to Cap2 as mRNAs age in the cytosol.  As a result  Cap2 is enriched on long lived mRNAs.  We find that large increases in the abundance of Cap1 leads to activation of RIG I  especially in conditions where RIG I expression is increased.  The methylation of Cap1 to Cap2 markedly reduces the ability of RNAs to bind and activate RIG I.  We find that the slow Cap2 methylation rate allows Cap2 to accumulate on host mRNAs yet ensures that low Cap2 levels occur on newly expressed viral RNAs.  Overall  these results reveal an immunostimulatory role for Cap1  and that Cap2 functions to reduce activation of the innate immune response. Overall design: We developed next generation sequencing methods for quantification of Cap2 methylation in bulk mRNA CapTag seq  as well as in individual mRNAs in a transcriptome wide manner CLAM Cap seq. Furthermore  we developed tools for measuring translation and stability of transcript start nucleotide TSN mRNA isoforms by combining polysome profiling and actinomycin D treatment with TSS seq transcription start site sequencing.", null, "pubmed:36725932", null, "Zebrafish CapQuant seq 2", "GSM5907184", null, "source name:48 hpf embryo|cell line/tissue:whole|genotype:wild type A/B|purification:oligodT25 beads", "Zebrafish CapQuant seq 2", "Removal of low quality reads and three prime end adapter trimming was performed with flexbar v2.5. Removal of duplicated reads was accomplished with pyFastqDuplicateRemover.py within the pyCRAC package v1.3.2. Read trimming was performed using seqtk package v1.3. Read alignement to fly  mouse or human genome was conducted using Bowtie v1.2.3. five prime end read coverage was calculated per each genomic position using BEDTools v2.28.0. Genome build: Drosohila melanogaster; dm6  Mus musculus; mm10  Homo sapiens; hg38.", "48 hpf embryo", null, "CapTag seq Total RNA was extracted using TRIzol reagent according to the manufacturers instructions followed by isopropanol precipitation.  PolyA+ RNA was isolated from total RNA using magnetic oligodT25 beads NEB.", "Zebrafish AB line embryos were maintained in E3 medium at 28 degrees and staged as previously described Kimmel et al.  Developmental Dynamics  1995.", "cell line/tissue:whole|genotype:wild type A/B|purification:oligodT25 beads", "GSM5907184", "GSM5907184: Zebrafish CapQuant seq 2; Danio rerio; OTHER", "GSM5907184 r1", "GSM5907184", "1", "CapTag seq Total RNA was extracted using TRIzol reagent according to the manufacturers instructions followed by isopropanol precipitation.  PolyA+ RNA was isolated from total RNA using magnetic oligodT25 beads NEB.", null, "OTHER", "TRANSCRIPTOMIC", "other", "SINGLE", "ILLUMINA", "Illumina HiSeq 2500", null, "SRP358067", null, null, "Zebrafish_CQS2_R1.fastq.gz", "fastq", 658260009.0, 12907059.0, "GSM5907184 r1", "0:51 1:0", "A:158463141;C:142984303;G:213148834;T:143656235;N:7496", 51, 0, null, null, 158463141, 142984303, 213148834, 143656235, 7496, "SRX14226378", "SRS12047703", "SRA1545466", "Pharmacology, Weill Cornell Medicine", "Pharmacology, Weill Cornell Medicine", 1, 0.0, null, 0.0, null, 1.0, null, null, null, 51, null, "T", null, "under 1.2% mapping rate", "illumina", "hiseq_era", "5prime", "poly_a", "unknown", "bulk", "bulk", "bulk", null, "United States", "2022-02-18", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"], [68503, "SRR18074849", "SRX14226377", "SRS12047702", "SRP358067", "PRJNA803151", "mRNA aging shapes the Cap2 methylome in mammalian mRNA", "GSE196043", "Other", "The mRNA cap structure is a major site of dynamic mRNA methylation.  mRNA caps exist in either the Cap1 or Cap2 form  depending on the presence of 2' O methylation on the first  or both the first and second transcribed nucleotide  respectively.  However  the identity of Cap2 containing mRNAs and the function of Cap2 are unclear.  Here we describe CLAM Cap Seq  a method for transcriptome wide mapping and quantification of Cap2.  We find that unlike other epitranscriptomic modifications  Cap2 can occur on all mRNAs.  Cap2 is formed through a slow continuous conversion of mRNAs from Cap1 to Cap2 as mRNAs age in the cytosol.  As a result  Cap2 is enriched on long lived mRNAs.  We find that large increases in the abundance of Cap1 leads to activation of RIG I  especially in conditions where RIG I expression is increased.  The methylation of Cap1 to Cap2 markedly reduces the ability of RNAs to bind and activate RIG I.  We find that the slow Cap2 methylation rate allows Cap2 to accumulate on host mRNAs yet ensures that low Cap2 levels occur on newly expressed viral RNAs.  Overall  these results reveal an immunostimulatory role for Cap1  and that Cap2 functions to reduce activation of the innate immune response. Overall design: We developed next generation sequencing methods for quantification of Cap2 methylation in bulk mRNA CapTag seq  as well as in individual mRNAs in a transcriptome wide manner CLAM Cap seq. Furthermore  we developed tools for measuring translation and stability of transcript start nucleotide TSN mRNA isoforms by combining polysome profiling and actinomycin D treatment with TSS seq transcription start site sequencing.", null, "pubmed:36725932", null, "Zebrafish CapQuant seq 1", "GSM5907183", null, "source name:48 hpf embryo|cell line/tissue:whole|genotype:wild type A/B|purification:oligodT25 beads", "Zebrafish CapQuant seq 1", "Removal of low quality reads and three prime end adapter trimming was performed with flexbar v2.5. Removal of duplicated reads was accomplished with pyFastqDuplicateRemover.py within the pyCRAC package v1.3.2. Read trimming was performed using seqtk package v1.3. Read alignement to fly  mouse or human genome was conducted using Bowtie v1.2.3. five prime end read coverage was calculated per each genomic position using BEDTools v2.28.0. Genome build: Drosohila melanogaster; dm6  Mus musculus; mm10  Homo sapiens; hg38.", "48 hpf embryo", null, "CapTag seq Total RNA was extracted using TRIzol reagent according to the manufacturers instructions followed by isopropanol precipitation.  PolyA+ RNA was isolated from total RNA using magnetic oligodT25 beads NEB.", "Zebrafish AB line embryos were maintained and staged as previously described Kimmel et al.  Developmental Dynamics  1995.", "cell line/tissue:whole|genotype:wild type A/B|purification:oligodT25 beads", "GSM5907183", "GSM5907183: Zebrafish CapQuant seq 1; Danio rerio; OTHER", "GSM5907183 r1", "GSM5907183", "1", "CapTag seq Total RNA was extracted using TRIzol reagent according to the manufacturers instructions followed by isopropanol precipitation.  PolyA+ RNA was isolated from total RNA using magnetic oligodT25 beads NEB.", null, "OTHER", "TRANSCRIPTOMIC", "other", "SINGLE", "ILLUMINA", "Illumina HiSeq 2500", null, "SRP358067", null, null, "Zebrafish_CQS1_R1.fastq.gz", "fastq", 1636691694.0, 32091994.0, "GSM5907183 r1", "0:51 1:0", "A:394187895;C:355520591;G:529426272;T:357424863;N:132073", 51, 0, null, null, 394187895, 355520591, 529426272, 357424863, 132073, "SRX14226377", "SRS12047702", "SRA1545466", "Pharmacology, Weill Cornell Medicine", "Pharmacology, Weill Cornell Medicine", 1, 0.0, null, 0.0, null, 1.0, null, null, null, 51, null, "T", null, "under 1.2% mapping rate", "illumina", "hiseq_era", "5prime", "poly_a", "unknown", "bulk", "bulk", "bulk", null, "United States", "2022-02-18", "Hatching", "Embryo", "Embryo Imprecise", "All anatomical structures"]], "truncated": false, "filtered_table_rows_count": 96, "expanded_columns": [], "expandable_columns": [], "columns": ["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"], "primary_keys": [], "units": {}, "query": {"sql": "select 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 from run_metadata where \"devstage_curation\" = :p0 and \"experiment.library_strategy\" = :p1 order by rowid limit 101", "params": {"p0": "Hatching", "p1": "OTHER"}}, "facet_results": {"experiment.library_strategy": {"name": "experiment.library_strategy", "type": "column", "hideable": false, "toggle_url": "/metadata/run_metadata.json?devstage_curation=Hatching&experiment.library_strategy=OTHER", "results": [{"value": "OTHER", "label": "OTHER", "count": 96, "toggle_url": "http://metadata.rnaquarium.org/metadata/run_metadata.json?devstage_curation=Hatching", "selected": true}], "truncated": false}, "experiment.library_source": {"name": "experiment.library_source", "type": "column", "hideable": false, "toggle_url": "/metadata/run_metadata.json?devstage_curation=Hatching&experiment.library_strategy=OTHER", "results": [{"value": 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