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zebrafish", "1 F1 WT", "1 F1 WT", "bone", null, null, "RNA-Seq", "TRANSCRIPTOMIC", "other", "PAIRED", "ILLUMINA", "Illumina HiSeq 4000", null, "SRP485828", null, null, "L1EGI0701124--WT_F1.R1.raw.fastq.gz L1EGI0701124--WT_F1.R2.raw.fastq.gz", "fastq fastq", 8373285522.0, 27726111.0, "L1EGI0701124  WT F1.R1.raw.fastq.gz", "0:151 1:151", "A:2148645285;C:1996284185;G:2121066399;T:2107255525;N:34128", 151, 151, null, null, 2148645285, 1996284185, 2121066399, 2107255525, 34128, "SRX23388295", "SRS20249488", "SRA1791477", "zhejiang university|the college of animal science", "zhejiang university", null, null, null, null, null, null, null, null, null, null, null, "B", "B", "biological fallback assumption", "illumina", "hiseq_era", "unknown", "other", "unknown", "bulk", "unknown", "unknown", null, "China", "2024-01-25", "Undetermined", "Undetermined", "Bone or Cartilage", "Skeletal Element"], [38060, "SRR1524244", "SRX661009", "SRS665984", "SRP044781", "PRJNA255848", "Danio rerio Transcriptome", "PRJNA255848", "Transcriptome Analysis", "Transcriptome analysis of 12 zebrafish tissues", "parent bioproject:PRJNA255979", "pubmed:27189481", "Zebrafish Bones", "Zebrafish B1s", "F Dr 8", null, "strain:AB|age:5 month|biomaterial provider:INRA|sex:female|tissue:B1s|BioSampleModel:Model organism or animal", null, null, null, null, null, null, null, null, "Zebrafish B1s", "F Dr 8", "F Dr 8", "Total RNA was qualified using an Agilent BioAnalyzer and 1 \u00b5g was used for polyA selection and library construction with Illumina's TruSeq stranded total RNA sample preparation kit according to the manufacturer's instructions TruSeq stranded total RNA SamplePrep Guide RevC", null, null, "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "Illumina HiSeq 2000", "<SPOT_DESCRIPTOR><SPOT_DECODE_SPEC><SPOT_LENGTH>200</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><READ_SPEC><READ_INDEX>1</READ_INDEX><READ_CLASS>Application Read</READ_CLASS><READ_TYPE>Reverse</READ_TYPE><BASE_COORD>101</BASE_COORD></READ_SPEC></SPOT_DECODE_SPEC></SPOT_DESCRIPTOR>", "SRP044781", null, null, "F_Dr_8_ACAGTG_L003_R2.fastq.gz F_Dr_8_ACAGTG_L003_R1.fastq.gz", "fastq fastq", 19343193000.0, 96715965.0, "F Dr 8 files", "0:100 1:100", "A:5011655819;C:4570121318;G:4634671917;T:4933523152;N:193220794", 100, 100, null, null, 5011655819, 4570121318, 4634671917, 4933523152, 193220794, "SRX661009", "SRS665984", "SRA176464", "INRA|Fish Physiology and Genomics", "INRA PhyloFish", 2, 0.88337, 0.91338, 0.05259, 0.05508, 0.75103, 0.75317, 0.51459, 0.51744, 100, 100, "B", "B", "biological fallback assumption", "illumina", "hiseq_era", "unknown", "poly_a", "trueseq", "bulk", "unknown", "unknown", null, "France", "2014-07-26", "Adult", "Adult", "Bone or Cartilage", "Skeletal Element"], [53148, "SRR9692022", "SRX6451056", "SRS5104327", "SRP214773", "PRJNA554788", "Gene expression analysis in the zebrafish fractured scale", "GSE134330", "Transcriptome Analysis", "Bone is a connective tissue which undergoes continuous remodeling  including bone resorption and formation by osteoclasts OCs and osteoblasts OBs  respectively. Recently  extracellular vesicles EVs are increasingly appreciated as a regulator of intercellular communication between OCs and OBs. The zebrafish scale is a thin membranous bone embedded in the skin and consists of OBs  OCs  and bone matrix  providing an elegant model to visualize OC OB communication. Here  we developed a double transgenic zebrafish line  trap:GFP; osterix:mCherry  which expresses GFP and mCherry under the control of the OC specific trap tartrate resistant acid phosphatase and OB specific osterix enhancer  respectively. Utilizing this double transgenic line  in combination with Hoechst 33342 Hoe staining  we isolated four distinct fractions from the scale at 1 day post fracture by flow cytometry  GFP\u2013 mCh+ Hoehigh OB fraction  GFPlow mCh+ Hoehigh OC precursor pOC fraction  GFPhigh Hoehigh mature OC mOC fraction  and mCh+ Hoe\u2013 OB derived extracellular vesicle EV fraction. In this study  we have performed RNA seq analysis using these four fractions to examine the gene expression profile of each  fraction. Overall design: mRNA profiles of isolated OBs  pOCs   mOCs  and OB derived EVs in the zebrafish fractured scales were generated by Quartz seq using Illumina NextSeq500.", null, "pubmed:32327701", null, "EV 2", "GSM3942348", null, "source name:osteoblast derived extracellular vesicles|age:adult|genotype:wild type|tissue:Sorted from the fractured sclae|cell type:osteoblast derived extracellular vesicles|molecule type:Amplified RNA", "EV 2", "Illumina RTA software was used for base calling. Sequence reads were mapped to the zebrafish reference genome GRCz11 using HiSAT2 version 2.1.0. Reads per million RPM were calculated using the Subread ver. 1.6.4. Genome build: GRCz11 Supplementary files format and content: Reads per million RPM values for each sample.", "osteoblast derived extracellular vesicles", null, "Total RNAs were extracted from sorted cells using RNeasy Mini Kit QIAGEN. Cells were directly sorted in a lysis buffer containing 1 \u03bcg/mL of polyinosinic polycytidylic acid  and total RNA was extracted using RNeasy Mini Kit. Reverse transcription RT was performed using Super Script III Thermo Fisher Scientific and an RT primer  which contains oligo dT  T7 promoter  and PCR target region sequences. post digestion of remaining RT primers by exonuclease I Takara  a poly A tail was added to the 3\u2019 ends of the first strand cDNAs using terminal transferase Sigma. The second strand DNA was then synthesized using MightyAmp DNA polymerase Thermo Fisher Scientific and a tagging primer  which contains oligo dT and PCR target region sequences. PCR amplification was performed using a suppression primer  which allow to amplify small size DNA that contains complementary sequences at both ends of the template DNA. The amplified double strand cDNA was purified using QIAquick PCR Purification Kit Qiagen. Library preparation was performed using Nextera XT DNA Library Preparation Kit illumina.", null, "age:adult|genotype:wild type|tissue:Sorted from the fractured sclae|cell type:osteoblast derived extracellular vesicles|molecule type:Amplified RNA", "GSM3942348", "GSM3942348: EV 2; Danio rerio; RNA Seq", "GSM3942348", null, "1", "Total RNAs were extracted from sorted cells using RNeasy Mini Kit QIAGEN. Cells were directly sorted in a lysis buffer containing 1 \u03bcg/mL of polyinosinic polycytidylic acid  and total RNA was extracted using RNeasy Mini Kit. Reverse transcription RT was performed using Super Script III Thermo Fisher Scientific and an RT primer  which contains oligo dT  T7 promoter  and PCR target region sequences. post digestion of remaining RT primers by exonuclease I Takara  a poly A tail was added to the three prime ends of the first strand cDNAs using terminal transferase Sigma. The second strand DNA was then synthesized using MightyAmp DNA polymerase Thermo Fisher Scientific and a tagging primer  which contains oligo dT and PCR target region sequences. PCR amplification was performed using a suppression primer  which allow to amplify small size DNA that contains complementary sequences at both ends of the template DNA. The amplified double strand cDNA was purified using QIAquick PCR Purification Kit Qiagen. Library preparation was performed using Nextera XT DNA Library Preparation Kit illumina.", null, "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP214773", null, null, "EV_2_R1.fastq.gz EV_2_R2.fastq.gz", "fastq fastq", 6759957000.0, 22533190.0, "GSM3942348 r1", "0:150 1:150", "A:1706593126;C:1699056754;G:1646763192;T:1707067337;N:476591", 150, 150, null, null, 1706593126, 1699056754, 1646763192, 1707067337, 476591, "SRX6451056", "SRS5104327", "SRA921382", "GEO", "Kanazawa University", 2, 0.94501, 0.94549, 0.02885, 0.03033, 0.80458, 0.80957, 0.48799, 0.50474, 150, 150, "B", "B", "biological fallback assumption", "illumina", "nextseq", "3prime", "poly_a", "nextera", "sc", "single_cell_plate", "quartzseq", null, "Japan", "2019-07-16", "Adult", "Adult", "Bone or Cartilage", "Skeletal Element"], [53149, "SRR9692021", "SRX6451055", "SRS5104326", "SRP214773", "PRJNA554788", "Gene expression analysis in the zebrafish fractured scale", "GSE134330", "Transcriptome Analysis", "Bone is a connective tissue which undergoes continuous remodeling  including bone resorption and formation by osteoclasts OCs and osteoblasts OBs  respectively. Recently  extracellular vesicles EVs are increasingly appreciated as a regulator of intercellular communication between OCs and OBs. The zebrafish scale is a thin membranous bone embedded in the skin and consists of OBs  OCs  and bone matrix  providing an elegant model to visualize OC OB communication. Here  we developed a double transgenic zebrafish line  trap:GFP; osterix:mCherry  which expresses GFP and mCherry under the control of the OC specific trap tartrate resistant acid phosphatase and OB specific osterix enhancer  respectively. Utilizing this double transgenic line  in combination with Hoechst 33342 Hoe staining  we isolated four distinct fractions from the scale at 1 day post fracture by flow cytometry  GFP\u2013 mCh+ Hoehigh OB fraction  GFPlow mCh+ Hoehigh OC precursor pOC fraction  GFPhigh Hoehigh mature OC mOC fraction  and mCh+ Hoe\u2013 OB derived extracellular vesicle EV fraction. In this study  we have performed RNA seq analysis using these four fractions to examine the gene expression profile of each  fraction. Overall design: mRNA profiles of isolated OBs  pOCs   mOCs  and OB derived EVs in the zebrafish fractured scales were generated by Quartz seq using Illumina NextSeq500.", null, "pubmed:32327701", null, "EV 1", "GSM3942347", null, "source name:osteoblast derived extracellular vesicles|age:adult|genotype:wild type|tissue:Sorted from the fractured sclae|cell type:osteoblast derived extracellular vesicles|molecule type:Amplified RNA", "EV 1", "Illumina RTA software was used for base calling. Sequence reads were mapped to the zebrafish reference genome GRCz11 using HiSAT2 version 2.1.0. Reads per million RPM were calculated using the Subread ver. 1.6.4. Genome build: GRCz11 Supplementary files format and content: Reads per million RPM values for each sample.", "osteoblast derived extracellular vesicles", null, "Total RNAs were extracted from sorted cells using RNeasy Mini Kit QIAGEN. Cells were directly sorted in a lysis buffer containing 1 \u03bcg/mL of polyinosinic polycytidylic acid  and total RNA was extracted using RNeasy Mini Kit. Reverse transcription RT was performed using Super Script III Thermo Fisher Scientific and an RT primer  which contains oligo dT  T7 promoter  and PCR target region sequences. post digestion of remaining RT primers by exonuclease I Takara  a poly A tail was added to the 3\u2019 ends of the first strand cDNAs using terminal transferase Sigma. The second strand DNA was then synthesized using MightyAmp DNA polymerase Thermo Fisher Scientific and a tagging primer  which contains oligo dT and PCR target region sequences. PCR amplification was performed using a suppression primer  which allow to amplify small size DNA that contains complementary sequences at both ends of the template DNA. The amplified double strand cDNA was purified using QIAquick PCR Purification Kit Qiagen. Library preparation was performed using Nextera XT DNA Library Preparation Kit illumina.", null, "age:adult|genotype:wild type|tissue:Sorted from the fractured sclae|cell type:osteoblast derived extracellular vesicles|molecule type:Amplified RNA", "GSM3942347", "GSM3942347: EV 1; Danio rerio; RNA Seq", "GSM3942347", null, "1", "Total RNAs were extracted from sorted cells using RNeasy Mini Kit QIAGEN. Cells were directly sorted in a lysis buffer containing 1 \u03bcg/mL of polyinosinic polycytidylic acid  and total RNA was extracted using RNeasy Mini Kit. Reverse transcription RT was performed using Super Script III Thermo Fisher Scientific and an RT primer  which contains oligo dT  T7 promoter  and PCR target region sequences. post digestion of remaining RT primers by exonuclease I Takara  a poly A tail was added to the three prime ends of the first strand cDNAs using terminal transferase Sigma. The second strand DNA was then synthesized using MightyAmp DNA polymerase Thermo Fisher Scientific and a tagging primer  which contains oligo dT and PCR target region sequences. PCR amplification was performed using a suppression primer  which allow to amplify small size DNA that contains complementary sequences at both ends of the template DNA. The amplified double strand cDNA was purified using QIAquick PCR Purification Kit Qiagen. Library preparation was performed using Nextera XT DNA Library Preparation Kit illumina.", null, "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP214773", null, null, "EV_1_R1.fastq.gz EV_1_R2.fastq.gz", "fastq fastq", 6368980200.0, 21229934.0, "GSM3942347 r1", "0:150 1:150", "A:1609224577;C:1593521490;G:1569729629;T:1596056057;N:448447", 150, 150, null, null, 1609224577, 1593521490, 1569729629, 1596056057, 448447, "SRX6451055", "SRS5104326", "SRA921382", "GEO", "Kanazawa University", 2, 0.93738, 0.93601, 0.02919, 0.03087, 0.79669, 0.80312, 0.50627, 0.50567, 150, 150, "B", "B", "biological fallback assumption", "illumina", "nextseq", "3prime", "poly_a", "nextera", "sc", "single_cell_plate", "quartzseq", null, "Japan", "2019-07-16", "Adult", "Adult", "Bone or Cartilage", "Skeletal Element"], [53154, "SRR9692016", "SRX6451050", "SRS5104321", "SRP214773", "PRJNA554788", "Gene expression analysis in the zebrafish fractured scale", "GSE134330", "Transcriptome Analysis", "Bone is a connective tissue which undergoes continuous remodeling  including bone resorption and formation by osteoclasts OCs and osteoblasts OBs  respectively. Recently  extracellular vesicles EVs are increasingly appreciated as a regulator of intercellular communication between OCs and OBs. The zebrafish scale is a thin membranous bone embedded in the skin and consists of OBs  OCs  and bone matrix  providing an elegant model to visualize OC OB communication. Here  we developed a double transgenic zebrafish line  trap:GFP; osterix:mCherry  which expresses GFP and mCherry under the control of the OC specific trap tartrate resistant acid phosphatase and OB specific osterix enhancer  respectively. Utilizing this double transgenic line  in combination with Hoechst 33342 Hoe staining  we isolated four distinct fractions from the scale at 1 day post fracture by flow cytometry  GFP\u2013 mCh+ Hoehigh OB fraction  GFPlow mCh+ Hoehigh OC precursor pOC fraction  GFPhigh Hoehigh mature OC mOC fraction  and mCh+ Hoe\u2013 OB derived extracellular vesicle EV fraction. In this study  we have performed RNA seq analysis using these four fractions to examine the gene expression profile of each  fraction. Overall design: mRNA profiles of isolated OBs  pOCs   mOCs  and OB derived EVs in the zebrafish fractured scales were generated by Quartz seq using Illumina NextSeq500.", null, "pubmed:32327701", null, "OB 2", "GSM3942342", null, "source name:osteoblasts|age:adult|genotype:wild type|tissue:Sorted from the fractured sclae|cell type:osteoblasts|molecule type:Amplified RNA", "OB 2", "Illumina RTA software was used for base calling. Sequence reads were mapped to the zebrafish reference genome GRCz11 using HiSAT2 version 2.1.0. Reads per million RPM were calculated using the Subread ver. 1.6.4. Genome build: GRCz11 Supplementary files format and content: Reads per million RPM values for each sample.", "osteoblasts", null, "Total RNAs were extracted from sorted cells using RNeasy Mini Kit QIAGEN. Cells were directly sorted in a lysis buffer containing 1 \u03bcg/mL of polyinosinic polycytidylic acid  and total RNA was extracted using RNeasy Mini Kit. Reverse transcription RT was performed using Super Script III Thermo Fisher Scientific and an RT primer  which contains oligo dT  T7 promoter  and PCR target region sequences. post digestion of remaining RT primers by exonuclease I Takara  a poly A tail was added to the 3\u2019 ends of the first strand cDNAs using terminal transferase Sigma. The second strand DNA was then synthesized using MightyAmp DNA polymerase Thermo Fisher Scientific and a tagging primer  which contains oligo dT and PCR target region sequences. PCR amplification was performed using a suppression primer  which allow to amplify small size DNA that contains complementary sequences at both ends of the template DNA. The amplified double strand cDNA was purified using QIAquick PCR Purification Kit Qiagen. Library preparation was performed using Nextera XT DNA Library Preparation Kit illumina.", null, "age:adult|genotype:wild type|tissue:Sorted from the fractured sclae|cell type:osteoblasts|molecule type:Amplified RNA", "GSM3942342", "GSM3942342: OB 2; Danio rerio; RNA Seq", "GSM3942342", null, "1", "Total RNAs were extracted from sorted cells using RNeasy Mini Kit QIAGEN. Cells were directly sorted in a lysis buffer containing 1 \u03bcg/mL of polyinosinic polycytidylic acid  and total RNA was extracted using RNeasy Mini Kit. Reverse transcription RT was performed using Super Script III Thermo Fisher Scientific and an RT primer  which contains oligo dT  T7 promoter  and PCR target region sequences. post digestion of remaining RT primers by exonuclease I Takara  a poly A tail was added to the three prime ends of the first strand cDNAs using terminal transferase Sigma. The second strand DNA was then synthesized using MightyAmp DNA polymerase Thermo Fisher Scientific and a tagging primer  which contains oligo dT and PCR target region sequences. PCR amplification was performed using a suppression primer  which allow to amplify small size DNA that contains complementary sequences at both ends of the template DNA. The amplified double strand cDNA was purified using QIAquick PCR Purification Kit Qiagen. Library preparation was performed using Nextera XT DNA Library Preparation Kit illumina.", null, "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP214773", null, null, "OB_2_R1.fastq.gz OB_2_R2.fastq.gz", "fastq fastq", 4566907200.0, 15223024.0, "GSM3942342 r1", "0:150 1:150", "A:1133280984;C:1162119484;G:1119861724;T:1151514772;N:130236", 150, 150, null, null, 1133280984, 1162119484, 1119861724, 1151514772, 130236, "SRX6451050", "SRS5104321", "SRA921382", "GEO", "Kanazawa University", 2, 0.9502, 0.9473, 0.0382, 0.04036, 0.77853, 0.78719, 0.47336, 0.4862, 150, 150, "B", "B", "biological fallback assumption", "illumina", "nextseq", "3prime", "poly_a", "nextera", "sc", "single_cell_plate", "quartzseq", null, "Japan", "2019-07-16", "Adult", "Adult", "Bone or Cartilage", "Skeletal Element"], [53155, "SRR9692015", "SRX6451049", "SRS5104320", "SRP214773", "PRJNA554788", "Gene expression analysis in the zebrafish fractured scale", "GSE134330", "Transcriptome Analysis", "Bone is a connective tissue which undergoes continuous remodeling  including bone resorption and formation by osteoclasts OCs and osteoblasts OBs  respectively. Recently  extracellular vesicles EVs are increasingly appreciated as a regulator of intercellular communication between OCs and OBs. The zebrafish scale is a thin membranous bone embedded in the skin and consists of OBs  OCs  and bone matrix  providing an elegant model to visualize OC OB communication. Here  we developed a double transgenic zebrafish line  trap:GFP; osterix:mCherry  which expresses GFP and mCherry under the control of the OC specific trap tartrate resistant acid phosphatase and OB specific osterix enhancer  respectively. Utilizing this double transgenic line  in combination with Hoechst 33342 Hoe staining  we isolated four distinct fractions from the scale at 1 day post fracture by flow cytometry  GFP\u2013 mCh+ Hoehigh OB fraction  GFPlow mCh+ Hoehigh OC precursor pOC fraction  GFPhigh Hoehigh mature OC mOC fraction  and mCh+ Hoe\u2013 OB derived extracellular vesicle EV fraction. In this study  we have performed RNA seq analysis using these four fractions to examine the gene expression profile of each  fraction. Overall design: mRNA profiles of isolated OBs  pOCs   mOCs  and OB derived EVs in the zebrafish fractured scales were generated by Quartz seq using Illumina NextSeq500.", null, "pubmed:32327701", null, "OB 1", "GSM3942341", null, "source name:osteoblasts|age:adult|genotype:wild type|tissue:Sorted from the fractured sclae|cell type:osteoblasts|molecule type:Amplified RNA", "OB 1", "Illumina RTA software was used for base calling. Sequence reads were mapped to the zebrafish reference genome GRCz11 using HiSAT2 version 2.1.0. Reads per million RPM were calculated using the Subread ver. 1.6.4. Genome build: GRCz11 Supplementary files format and content: Reads per million RPM values for each sample.", "osteoblasts", null, "Total RNAs were extracted from sorted cells using RNeasy Mini Kit QIAGEN. Cells were directly sorted in a lysis buffer containing 1 \u03bcg/mL of polyinosinic polycytidylic acid  and total RNA was extracted using RNeasy Mini Kit. Reverse transcription RT was performed using Super Script III Thermo Fisher Scientific and an RT primer  which contains oligo dT  T7 promoter  and PCR target region sequences. post digestion of remaining RT primers by exonuclease I Takara  a poly A tail was added to the 3\u2019 ends of the first strand cDNAs using terminal transferase Sigma. The second strand DNA was then synthesized using MightyAmp DNA polymerase Thermo Fisher Scientific and a tagging primer  which contains oligo dT and PCR target region sequences. PCR amplification was performed using a suppression primer  which allow to amplify small size DNA that contains complementary sequences at both ends of the template DNA. The amplified double strand cDNA was purified using QIAquick PCR Purification Kit Qiagen. Library preparation was performed using Nextera XT DNA Library Preparation Kit illumina.", null, "age:adult|genotype:wild type|tissue:Sorted from the fractured sclae|cell type:osteoblasts|molecule type:Amplified RNA", "GSM3942341", "GSM3942341: OB 1; Danio rerio; RNA Seq", "GSM3942341", null, "1", "Total RNAs were extracted from sorted cells using RNeasy Mini Kit QIAGEN. Cells were directly sorted in a lysis buffer containing 1 \u03bcg/mL of polyinosinic polycytidylic acid  and total RNA was extracted using RNeasy Mini Kit. Reverse transcription RT was performed using Super Script III Thermo Fisher Scientific and an RT primer  which contains oligo dT  T7 promoter  and PCR target region sequences. post digestion of remaining RT primers by exonuclease I Takara  a poly A tail was added to the three prime ends of the first strand cDNAs using terminal transferase Sigma. The second strand DNA was then synthesized using MightyAmp DNA polymerase Thermo Fisher Scientific and a tagging primer  which contains oligo dT and PCR target region sequences. PCR amplification was performed using a suppression primer  which allow to amplify small size DNA that contains complementary sequences at both ends of the template DNA. The amplified double strand cDNA was purified using QIAquick PCR Purification Kit Qiagen. Library preparation was performed using Nextera XT DNA Library Preparation Kit illumina.", null, "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP214773", null, null, "OB_1_R1.fastq.gz OB_1_R2.fastq.gz", "fastq fastq", 3924215700.0, 13080719.0, "GSM3942341 r1", "0:150 1:150", "A:983923789;C:989882668;G:965519773;T:984780602;N:108868", 150, 150, null, null, 983923789, 989882668, 965519773, 984780602, 108868, "SRX6451049", "SRS5104320", "SRA921382", "GEO", "Kanazawa University", 2, 0.95148, 0.94857, 0.03822, 0.04077, 0.77705, 0.78729, 0.48248, 0.49117, 150, 150, "B", "B", "biological fallback assumption", "illumina", "nextseq", "3prime", "poly_a", "nextera", "sc", "single_cell_plate", "quartzseq", null, "Japan", "2019-07-16", "Adult", "Adult", "Bone or Cartilage", "Skeletal Element"], [59343, "SRR11862830", "SRX8413198", "SRS6725509", "SRP265073", "PRJNA635584", "Single cell analysis of juvenile Nkx3.2 mutant zebrafish craniofacial skeleton", "GSE151354", "Transcriptome Analysis", "The specification and maintenance of distinct zones of chondrocytes within growth plates and joints ensures proper skeletal development through maturity. Rare mutations in the transcription factor NKX3.2 underlie Spondylo megaepiphyseal metaphyseal dysplasia SMMD  which is characterized by skeletal defects including scoliosis  large epiphyses  wide growth plates  and supernumerary joints in the distal limbs. Embryonic knockdown of nkx3.2 function in zebrafish had revealed a requirement in jaw joint specification  yet embryonic lethality of nkx3.2 knockdown zebrafish and mouse Nkx3.2 mutants had precluded an analysis of post embryonic functions. Here we report adult viable nkx3.2 zebrafish mutants that display ectopic cartilage overgrowth in place of a missing jaw joint  as well as severe dysmorphologies of the facial skeleton  skullcap  and spine. We also isolate rare viable nkx3.2 knockdown animals that lack the jaw joint but fail to display ectopic cartilage growth and scoliosis  indicating post embryonic roles for Nkx3.2 beyond jaw joint specification. Consistently  we observe nkx3.2 expression in the subarticular zone of the adult jaw joint and in pre hypertrophic growth plate chondrocytes. Single cell RNA sequencing reveals an upregulation of stress induced pathways in mutants  including the prostaglandin D2 synthase ptgdsb.1 and the mTOR regulator sestrin1  which we confirm by in situ RNA analysis of the defective jaw joint region. Our data reveal a zebrafish model for the joint and spine defects of SMMD and point to post embryonic roles for Nkx3.2 in buffering the stress response and dampening proliferation in joint adjacent chondrocytes. Overall design: Single cell RNA sequencing of FACS isolated cartilages fli:GFP/sox10:DsRed+ from wildtype and nkx3.2 mutants", null, "pubmed:33462117", null, "nkx3.2 mutant cartilage", "GSM4575943", null, "tissue:cartilage|strain:Tgfli1a:EGFPy1; Tgsox10:DsRedel10|genotype:nkx3.2 el802/el802|age:22 dpf", "nkx3.2 mutant cartilage", "Reads were aligned to z11 genome using Cell Ranger 3. Genome build: z11 Supplementary files format and content: barcode  gene and matrix files from Cell Ranger alignment and trimming", "cartilage", null, "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", null, "strain:Tgfli1a:EGFPy1;Tgsox10:DsRedel10|genotype:nkx3.2 el802/el802|age:22 dpf", "GSM4575943", "GSM4575943: nkx3.2 mutant cartilage; Danio rerio; RNA Seq", "GSM4575943", null, "1", "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", "GEO Accession:GSM4575943", "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP265073", null, null, "Nkx3-2-MUT-1_S5_R1_001.fastq.gz Nkx3-2-MUT-1_S5_R2_001.fastq.gz", "fastq fastq", 9697124900.0, 65763725.0, "GSM4575943 r1", "0:27 1:120.45", "A:2738148127;C:2079798183;G:2363549380;T:2485374716;N:30254494", 27, 120, null, null, 2738148127, 2079798183, 2363549380, 2485374716, 30254494, "SRX8413198", "SRS6725509", "SRA1080696", "GEO", "Smeeton Lab, Rehabilitation and Regenerative Medicine, Columbia University Irving Medical Center", 2, 0.00401, 0.94743, 0.00111, 0.12105, 0.99271, 0.87099, 0.53745, 0.48087, 27, 121, "T", "B", "sc-like readlen", "illumina", "nextseq", "3prime", "cdna_unspecified", "unknown", "sc", "single_cell_droplet", "10x", null, "United States", "2020-05-28", "Larval", "Larval", "Bone or Cartilage", "Skeletal Element"], [59344, "SRR11862831", "SRX8413198", "SRS6725509", "SRP265073", "PRJNA635584", "Single cell analysis of juvenile Nkx3.2 mutant zebrafish craniofacial skeleton", "GSE151354", "Transcriptome Analysis", "The specification and maintenance of distinct zones of chondrocytes within growth plates and joints ensures proper skeletal development through maturity. Rare mutations in the transcription factor NKX3.2 underlie Spondylo megaepiphyseal metaphyseal dysplasia SMMD  which is characterized by skeletal defects including scoliosis  large epiphyses  wide growth plates  and supernumerary joints in the distal limbs. Embryonic knockdown of nkx3.2 function in zebrafish had revealed a requirement in jaw joint specification  yet embryonic lethality of nkx3.2 knockdown zebrafish and mouse Nkx3.2 mutants had precluded an analysis of post embryonic functions. Here we report adult viable nkx3.2 zebrafish mutants that display ectopic cartilage overgrowth in place of a missing jaw joint  as well as severe dysmorphologies of the facial skeleton  skullcap  and spine. We also isolate rare viable nkx3.2 knockdown animals that lack the jaw joint but fail to display ectopic cartilage growth and scoliosis  indicating post embryonic roles for Nkx3.2 beyond jaw joint specification. Consistently  we observe nkx3.2 expression in the subarticular zone of the adult jaw joint and in pre hypertrophic growth plate chondrocytes. Single cell RNA sequencing reveals an upregulation of stress induced pathways in mutants  including the prostaglandin D2 synthase ptgdsb.1 and the mTOR regulator sestrin1  which we confirm by in situ RNA analysis of the defective jaw joint region. Our data reveal a zebrafish model for the joint and spine defects of SMMD and point to post embryonic roles for Nkx3.2 in buffering the stress response and dampening proliferation in joint adjacent chondrocytes. Overall design: Single cell RNA sequencing of FACS isolated cartilages fli:GFP/sox10:DsRed+ from wildtype and nkx3.2 mutants", null, "pubmed:33462117", null, "nkx3.2 mutant cartilage", "GSM4575943", null, "tissue:cartilage|strain:Tgfli1a:EGFPy1; Tgsox10:DsRedel10|genotype:nkx3.2 el802/el802|age:22 dpf", "nkx3.2 mutant cartilage", "Reads were aligned to z11 genome using Cell Ranger 3. Genome build: z11 Supplementary files format and content: barcode  gene and matrix files from Cell Ranger alignment and trimming", "cartilage", null, "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", null, "strain:Tgfli1a:EGFPy1;Tgsox10:DsRedel10|genotype:nkx3.2 el802/el802|age:22 dpf", "GSM4575943", "GSM4575943: nkx3.2 mutant cartilage; Danio rerio; RNA Seq", "GSM4575943", null, "1", "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", "GEO Accession:GSM4575943", "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP265073", null, null, "Nkx3-2-MUT-2_S6_R1_001.fastq.gz Nkx3-2-MUT-2_S6_R2_001.fastq.gz", "fastq fastq", 8288960388.0, 56212365.0, "GSM4575943 r2", "0:27 1:120.46", "A:2329428215;C:1772611501;G:2036479311;T:2124708625;N:25732736", 27, 120, null, null, 2329428215, 1772611501, 2036479311, 2124708625, 25732736, "SRX8413198", "SRS6725509", "SRA1080696", "GEO", "Smeeton Lab, Rehabilitation and Regenerative Medicine, Columbia University Irving Medical Center", 2, 0.00387, 0.94449, 0.00091, 0.12074, 0.99287, 0.87207, 0.52767, 0.48355, 27, 121, "T", "B", "sc-like readlen", "illumina", "nextseq", "3prime", "cdna_unspecified", "unknown", "sc", "single_cell_droplet", "10x", null, "United States", "2020-05-28", "Larval", "Larval", "Bone or Cartilage", "Skeletal Element"], [59345, "SRR11862832", "SRX8413198", "SRS6725509", "SRP265073", "PRJNA635584", "Single cell analysis of juvenile Nkx3.2 mutant zebrafish craniofacial skeleton", "GSE151354", "Transcriptome Analysis", "The specification and maintenance of distinct zones of chondrocytes within growth plates and joints ensures proper skeletal development through maturity. Rare mutations in the transcription factor NKX3.2 underlie Spondylo megaepiphyseal metaphyseal dysplasia SMMD  which is characterized by skeletal defects including scoliosis  large epiphyses  wide growth plates  and supernumerary joints in the distal limbs. Embryonic knockdown of nkx3.2 function in zebrafish had revealed a requirement in jaw joint specification  yet embryonic lethality of nkx3.2 knockdown zebrafish and mouse Nkx3.2 mutants had precluded an analysis of post embryonic functions. Here we report adult viable nkx3.2 zebrafish mutants that display ectopic cartilage overgrowth in place of a missing jaw joint  as well as severe dysmorphologies of the facial skeleton  skullcap  and spine. We also isolate rare viable nkx3.2 knockdown animals that lack the jaw joint but fail to display ectopic cartilage growth and scoliosis  indicating post embryonic roles for Nkx3.2 beyond jaw joint specification. Consistently  we observe nkx3.2 expression in the subarticular zone of the adult jaw joint and in pre hypertrophic growth plate chondrocytes. Single cell RNA sequencing reveals an upregulation of stress induced pathways in mutants  including the prostaglandin D2 synthase ptgdsb.1 and the mTOR regulator sestrin1  which we confirm by in situ RNA analysis of the defective jaw joint region. Our data reveal a zebrafish model for the joint and spine defects of SMMD and point to post embryonic roles for Nkx3.2 in buffering the stress response and dampening proliferation in joint adjacent chondrocytes. Overall design: Single cell RNA sequencing of FACS isolated cartilages fli:GFP/sox10:DsRed+ from wildtype and nkx3.2 mutants", null, "pubmed:33462117", null, "nkx3.2 mutant cartilage", "GSM4575943", null, "tissue:cartilage|strain:Tgfli1a:EGFPy1; Tgsox10:DsRedel10|genotype:nkx3.2 el802/el802|age:22 dpf", "nkx3.2 mutant cartilage", "Reads were aligned to z11 genome using Cell Ranger 3. Genome build: z11 Supplementary files format and content: barcode  gene and matrix files from Cell Ranger alignment and trimming", "cartilage", null, "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", null, "strain:Tgfli1a:EGFPy1;Tgsox10:DsRedel10|genotype:nkx3.2 el802/el802|age:22 dpf", "GSM4575943", "GSM4575943: nkx3.2 mutant cartilage; Danio rerio; RNA Seq", "GSM4575943", null, "1", "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", "GEO Accession:GSM4575943", "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP265073", null, null, "Nkx3-2-MUT-3_S7_R1_001.fastq.gz Nkx3-2-MUT-3_S7_R2_001.fastq.gz", "fastq fastq", 10287717159.0, 69768062.0, "GSM4575943 r3", "0:27 1:120.46", "A:2893541462;C:2211093397;G:2523388252;T:2627515640;N:32178408", 27, 120, null, null, 2893541462, 2211093397, 2523388252, 2627515640, 32178408, "SRX8413198", "SRS6725509", "SRA1080696", "GEO", "Smeeton Lab, Rehabilitation and Regenerative Medicine, Columbia University Irving Medical Center", 2, 0.00413, 0.94417, 0.00109, 0.11868, 0.99338, 0.87274, 0.57301, 0.47692, 27, 121, "T", "B", "sc-like readlen", "illumina", "nextseq", "3prime", "cdna_unspecified", "unknown", "sc", "single_cell_droplet", "10x", null, "United States", "2020-05-28", "Larval", "Larval", "Bone or Cartilage", "Skeletal Element"], [59346, "SRR11862833", "SRX8413198", "SRS6725509", "SRP265073", "PRJNA635584", "Single cell analysis of juvenile Nkx3.2 mutant zebrafish craniofacial skeleton", "GSE151354", "Transcriptome Analysis", "The specification and maintenance of distinct zones of chondrocytes within growth plates and joints ensures proper skeletal development through maturity. Rare mutations in the transcription factor NKX3.2 underlie Spondylo megaepiphyseal metaphyseal dysplasia SMMD  which is characterized by skeletal defects including scoliosis  large epiphyses  wide growth plates  and supernumerary joints in the distal limbs. Embryonic knockdown of nkx3.2 function in zebrafish had revealed a requirement in jaw joint specification  yet embryonic lethality of nkx3.2 knockdown zebrafish and mouse Nkx3.2 mutants had precluded an analysis of post embryonic functions. Here we report adult viable nkx3.2 zebrafish mutants that display ectopic cartilage overgrowth in place of a missing jaw joint  as well as severe dysmorphologies of the facial skeleton  skullcap  and spine. We also isolate rare viable nkx3.2 knockdown animals that lack the jaw joint but fail to display ectopic cartilage growth and scoliosis  indicating post embryonic roles for Nkx3.2 beyond jaw joint specification. Consistently  we observe nkx3.2 expression in the subarticular zone of the adult jaw joint and in pre hypertrophic growth plate chondrocytes. Single cell RNA sequencing reveals an upregulation of stress induced pathways in mutants  including the prostaglandin D2 synthase ptgdsb.1 and the mTOR regulator sestrin1  which we confirm by in situ RNA analysis of the defective jaw joint region. Our data reveal a zebrafish model for the joint and spine defects of SMMD and point to post embryonic roles for Nkx3.2 in buffering the stress response and dampening proliferation in joint adjacent chondrocytes. Overall design: Single cell RNA sequencing of FACS isolated cartilages fli:GFP/sox10:DsRed+ from wildtype and nkx3.2 mutants", null, "pubmed:33462117", null, "nkx3.2 mutant cartilage", "GSM4575943", null, "tissue:cartilage|strain:Tgfli1a:EGFPy1; Tgsox10:DsRedel10|genotype:nkx3.2 el802/el802|age:22 dpf", "nkx3.2 mutant cartilage", "Reads were aligned to z11 genome using Cell Ranger 3. Genome build: z11 Supplementary files format and content: barcode  gene and matrix files from Cell Ranger alignment and trimming", "cartilage", null, "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", null, "strain:Tgfli1a:EGFPy1;Tgsox10:DsRedel10|genotype:nkx3.2 el802/el802|age:22 dpf", "GSM4575943", "GSM4575943: nkx3.2 mutant cartilage; Danio rerio; RNA Seq", "GSM4575943", null, "1", "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", "GEO Accession:GSM4575943", "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP265073", null, null, "Nkx3-2-MUT-4_S8_R1_001.fastq.gz Nkx3-2-MUT-4_S8_R2_001.fastq.gz", "fastq fastq", 11403239527.0, 77332826.0, "GSM4575943 r4", "0:27 1:120.46", "A:3213260011;C:2448235155;G:2783221057;T:2922954756;N:35568548", 27, 120, null, null, 3213260011, 2448235155, 2783221057, 2922954756, 35568548, "SRX8413198", "SRS6725509", "SRA1080696", "GEO", "Smeeton Lab, Rehabilitation and Regenerative Medicine, Columbia University Irving Medical Center", 2, 0.00403, 0.9454, 0.00096, 0.11889, 0.99277, 0.87249, 0.52252, 0.48389, 27, 121, "T", "B", "sc-like readlen", "illumina", "nextseq", "3prime", "cdna_unspecified", "unknown", "sc", "single_cell_droplet", "10x", null, "United States", "2020-05-28", "Larval", "Larval", "Bone or Cartilage", "Skeletal Element"], [59347, "SRR11862826", "SRX8413197", "SRS6725508", "SRP265073", "PRJNA635584", "Single cell analysis of juvenile Nkx3.2 mutant zebrafish craniofacial skeleton", "GSE151354", "Transcriptome Analysis", "The specification and maintenance of distinct zones of chondrocytes within growth plates and joints ensures proper skeletal development through maturity. Rare mutations in the transcription factor NKX3.2 underlie Spondylo megaepiphyseal metaphyseal dysplasia SMMD  which is characterized by skeletal defects including scoliosis  large epiphyses  wide growth plates  and supernumerary joints in the distal limbs. Embryonic knockdown of nkx3.2 function in zebrafish had revealed a requirement in jaw joint specification  yet embryonic lethality of nkx3.2 knockdown zebrafish and mouse Nkx3.2 mutants had precluded an analysis of post embryonic functions. Here we report adult viable nkx3.2 zebrafish mutants that display ectopic cartilage overgrowth in place of a missing jaw joint  as well as severe dysmorphologies of the facial skeleton  skullcap  and spine. We also isolate rare viable nkx3.2 knockdown animals that lack the jaw joint but fail to display ectopic cartilage growth and scoliosis  indicating post embryonic roles for Nkx3.2 beyond jaw joint specification. Consistently  we observe nkx3.2 expression in the subarticular zone of the adult jaw joint and in pre hypertrophic growth plate chondrocytes. Single cell RNA sequencing reveals an upregulation of stress induced pathways in mutants  including the prostaglandin D2 synthase ptgdsb.1 and the mTOR regulator sestrin1  which we confirm by in situ RNA analysis of the defective jaw joint region. Our data reveal a zebrafish model for the joint and spine defects of SMMD and point to post embryonic roles for Nkx3.2 in buffering the stress response and dampening proliferation in joint adjacent chondrocytes. Overall design: Single cell RNA sequencing of FACS isolated cartilages fli:GFP/sox10:DsRed+ from wildtype and nkx3.2 mutants", null, "pubmed:33462117", null, "WT cartilage", "GSM4575942", null, "tissue:cartilage|strain:Tgfli1a:EGFPy1; Tgsox10:DsRedel10|genotype:WT|age:21 dpf", "WT cartilage", "Reads were aligned to z11 genome using Cell Ranger 3. Genome build: z11 Supplementary files format and content: barcode  gene and matrix files from Cell Ranger alignment and trimming", "cartilage", null, "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", null, "strain:Tgfli1a:EGFPy1;Tgsox10:DsRedel10|genotype:WT|age:21 dpf", "GSM4575942", "GSM4575942: WT cartilage; Danio rerio; RNA Seq", "GSM4575942", null, "1", "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", "GEO Accession:GSM4575942", "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP265073", null, null, "Nkx3-2-WT-1_S1_R1_001.fastq.gz Nkx3-2-WT-1_S1_R2_001.fastq.gz", "fastq fastq", 5536576254.0, 37550556.0, "GSM4575942 r1", "0:27 1:120.44", "A:1572836902;C:1170801448;G:1342556738;T:1433261598;N:17119568", 27, 120, null, null, 1572836902, 1170801448, 1342556738, 1433261598, 17119568, "SRX8413197", "SRS6725508", "SRA1080696", "GEO", "Smeeton Lab, Rehabilitation and Regenerative Medicine, Columbia University Irving Medical Center", 2, 0.00474, 0.94009, 0.00117, 0.13657, 0.99214, 0.87099, 0.55795, 0.47023, 27, 120, "T", "B", "sc-like readlen", "illumina", "nextseq", "3prime", "cdna_unspecified", "unknown", "sc", "single_cell_droplet", "10x", null, "United States", "2020-05-28", "Larval", "Larval", "Bone or Cartilage", "Skeletal Element"], [59348, "SRR11862827", "SRX8413197", "SRS6725508", "SRP265073", "PRJNA635584", "Single cell analysis of juvenile Nkx3.2 mutant zebrafish craniofacial skeleton", "GSE151354", "Transcriptome Analysis", "The specification and maintenance of distinct zones of chondrocytes within growth plates and joints ensures proper skeletal development through maturity. Rare mutations in the transcription factor NKX3.2 underlie Spondylo megaepiphyseal metaphyseal dysplasia SMMD  which is characterized by skeletal defects including scoliosis  large epiphyses  wide growth plates  and supernumerary joints in the distal limbs. Embryonic knockdown of nkx3.2 function in zebrafish had revealed a requirement in jaw joint specification  yet embryonic lethality of nkx3.2 knockdown zebrafish and mouse Nkx3.2 mutants had precluded an analysis of post embryonic functions. Here we report adult viable nkx3.2 zebrafish mutants that display ectopic cartilage overgrowth in place of a missing jaw joint  as well as severe dysmorphologies of the facial skeleton  skullcap  and spine. We also isolate rare viable nkx3.2 knockdown animals that lack the jaw joint but fail to display ectopic cartilage growth and scoliosis  indicating post embryonic roles for Nkx3.2 beyond jaw joint specification. Consistently  we observe nkx3.2 expression in the subarticular zone of the adult jaw joint and in pre hypertrophic growth plate chondrocytes. Single cell RNA sequencing reveals an upregulation of stress induced pathways in mutants  including the prostaglandin D2 synthase ptgdsb.1 and the mTOR regulator sestrin1  which we confirm by in situ RNA analysis of the defective jaw joint region. Our data reveal a zebrafish model for the joint and spine defects of SMMD and point to post embryonic roles for Nkx3.2 in buffering the stress response and dampening proliferation in joint adjacent chondrocytes. Overall design: Single cell RNA sequencing of FACS isolated cartilages fli:GFP/sox10:DsRed+ from wildtype and nkx3.2 mutants", null, "pubmed:33462117", null, "WT cartilage", "GSM4575942", null, "tissue:cartilage|strain:Tgfli1a:EGFPy1; Tgsox10:DsRedel10|genotype:WT|age:21 dpf", "WT cartilage", "Reads were aligned to z11 genome using Cell Ranger 3. Genome build: z11 Supplementary files format and content: barcode  gene and matrix files from Cell Ranger alignment and trimming", "cartilage", null, "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", null, "strain:Tgfli1a:EGFPy1;Tgsox10:DsRedel10|genotype:WT|age:21 dpf", "GSM4575942", "GSM4575942: WT cartilage; Danio rerio; RNA Seq", "GSM4575942", null, "1", "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", "GEO Accession:GSM4575942", "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP265073", null, null, "Nkx3-2-WT-2_S2_R1_001.fastq.gz Nkx3-2-WT-2_S2_R2_001.fastq.gz", "fastq fastq", 11876388158.0, 80550349.0, "GSM4575942 r2", "0:27 1:120.44", "A:3364971535;C:2517119793;G:2894599801;T:3062999066;N:36697963", 27, 120, null, null, 3364971535, 2517119793, 2894599801, 3062999066, 36697963, "SRX8413197", "SRS6725508", "SRA1080696", "GEO", "Smeeton Lab, Rehabilitation and Regenerative Medicine, Columbia University Irving Medical Center", 2, 0.00483, 0.94036, 0.00117, 0.13342, 0.99159, 0.86908, 0.55589, 0.46271, 27, 121, "T", "B", "sc-like readlen", "illumina", "nextseq", "3prime", "cdna_unspecified", "unknown", "sc", "single_cell_droplet", "10x", null, "United States", "2020-05-28", "Larval", "Larval", "Bone or Cartilage", "Skeletal Element"], [59349, "SRR11862828", "SRX8413197", "SRS6725508", "SRP265073", "PRJNA635584", "Single cell analysis of juvenile Nkx3.2 mutant zebrafish craniofacial skeleton", "GSE151354", "Transcriptome Analysis", "The specification and maintenance of distinct zones of chondrocytes within growth plates and joints ensures proper skeletal development through maturity. Rare mutations in the transcription factor NKX3.2 underlie Spondylo megaepiphyseal metaphyseal dysplasia SMMD  which is characterized by skeletal defects including scoliosis  large epiphyses  wide growth plates  and supernumerary joints in the distal limbs. Embryonic knockdown of nkx3.2 function in zebrafish had revealed a requirement in jaw joint specification  yet embryonic lethality of nkx3.2 knockdown zebrafish and mouse Nkx3.2 mutants had precluded an analysis of post embryonic functions. Here we report adult viable nkx3.2 zebrafish mutants that display ectopic cartilage overgrowth in place of a missing jaw joint  as well as severe dysmorphologies of the facial skeleton  skullcap  and spine. We also isolate rare viable nkx3.2 knockdown animals that lack the jaw joint but fail to display ectopic cartilage growth and scoliosis  indicating post embryonic roles for Nkx3.2 beyond jaw joint specification. Consistently  we observe nkx3.2 expression in the subarticular zone of the adult jaw joint and in pre hypertrophic growth plate chondrocytes. Single cell RNA sequencing reveals an upregulation of stress induced pathways in mutants  including the prostaglandin D2 synthase ptgdsb.1 and the mTOR regulator sestrin1  which we confirm by in situ RNA analysis of the defective jaw joint region. Our data reveal a zebrafish model for the joint and spine defects of SMMD and point to post embryonic roles for Nkx3.2 in buffering the stress response and dampening proliferation in joint adjacent chondrocytes. Overall design: Single cell RNA sequencing of FACS isolated cartilages fli:GFP/sox10:DsRed+ from wildtype and nkx3.2 mutants", null, "pubmed:33462117", null, "WT cartilage", "GSM4575942", null, "tissue:cartilage|strain:Tgfli1a:EGFPy1; Tgsox10:DsRedel10|genotype:WT|age:21 dpf", "WT cartilage", "Reads were aligned to z11 genome using Cell Ranger 3. Genome build: z11 Supplementary files format and content: barcode  gene and matrix files from Cell Ranger alignment and trimming", "cartilage", null, "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", null, "strain:Tgfli1a:EGFPy1;Tgsox10:DsRedel10|genotype:WT|age:21 dpf", "GSM4575942", "GSM4575942: WT cartilage; Danio rerio; RNA Seq", "GSM4575942", null, "1", "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", "GEO Accession:GSM4575942", "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP265073", null, null, "Nkx3-2-WT-3_S3_R1_001.fastq.gz Nkx3-2-WT-3_S3_R2_001.fastq.gz", "fastq fastq", 11069345273.0, 75076558.0, "GSM4575942 r3", "0:27 1:120.44", "A:3145549374;C:2343216049;G:2703001091;T:2843206620;N:34372139", 27, 120, null, null, 3145549374, 2343216049, 2703001091, 2843206620, 34372139, "SRX8413197", "SRS6725508", "SRA1080696", "GEO", "Smeeton Lab, Rehabilitation and Regenerative Medicine, Columbia University Irving Medical Center", 2, 0.00474, 0.94141, 0.00114, 0.13537, 0.99255, 0.87428, 0.57339, 0.47945, 27, 120, "T", "B", "sc-like readlen", "illumina", "nextseq", "3prime", "cdna_unspecified", "unknown", "sc", "single_cell_droplet", "10x", null, "United States", "2020-05-28", "Larval", "Larval", "Bone or Cartilage", "Skeletal Element"], [59350, "SRR11862829", "SRX8413197", "SRS6725508", "SRP265073", "PRJNA635584", "Single cell analysis of juvenile Nkx3.2 mutant zebrafish craniofacial skeleton", "GSE151354", "Transcriptome Analysis", "The specification and maintenance of distinct zones of chondrocytes within growth plates and joints ensures proper skeletal development through maturity. Rare mutations in the transcription factor NKX3.2 underlie Spondylo megaepiphyseal metaphyseal dysplasia SMMD  which is characterized by skeletal defects including scoliosis  large epiphyses  wide growth plates  and supernumerary joints in the distal limbs. Embryonic knockdown of nkx3.2 function in zebrafish had revealed a requirement in jaw joint specification  yet embryonic lethality of nkx3.2 knockdown zebrafish and mouse Nkx3.2 mutants had precluded an analysis of post embryonic functions. Here we report adult viable nkx3.2 zebrafish mutants that display ectopic cartilage overgrowth in place of a missing jaw joint  as well as severe dysmorphologies of the facial skeleton  skullcap  and spine. We also isolate rare viable nkx3.2 knockdown animals that lack the jaw joint but fail to display ectopic cartilage growth and scoliosis  indicating post embryonic roles for Nkx3.2 beyond jaw joint specification. Consistently  we observe nkx3.2 expression in the subarticular zone of the adult jaw joint and in pre hypertrophic growth plate chondrocytes. Single cell RNA sequencing reveals an upregulation of stress induced pathways in mutants  including the prostaglandin D2 synthase ptgdsb.1 and the mTOR regulator sestrin1  which we confirm by in situ RNA analysis of the defective jaw joint region. Our data reveal a zebrafish model for the joint and spine defects of SMMD and point to post embryonic roles for Nkx3.2 in buffering the stress response and dampening proliferation in joint adjacent chondrocytes. Overall design: Single cell RNA sequencing of FACS isolated cartilages fli:GFP/sox10:DsRed+ from wildtype and nkx3.2 mutants", null, "pubmed:33462117", null, "WT cartilage", "GSM4575942", null, "tissue:cartilage|strain:Tgfli1a:EGFPy1; Tgsox10:DsRedel10|genotype:WT|age:21 dpf", "WT cartilage", "Reads were aligned to z11 genome using Cell Ranger 3. Genome build: z11 Supplementary files format and content: barcode  gene and matrix files from Cell Ranger alignment and trimming", "cartilage", null, "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", null, "strain:Tgfli1a:EGFPy1;Tgsox10:DsRedel10|genotype:WT|age:21 dpf", "GSM4575942", "GSM4575942: WT cartilage; Danio rerio; RNA Seq", "GSM4575942", null, "1", "Cells were dissociated from 21dpf zebrafish and FACS sorted for fli1a:eGFP;sox10:DsRed double positive live cells. Single cells were processed through the 10X chromium controller Barcoded cDNA libraries were generated using 10X Genomics standard scRNAseq protocol using three prime Gene Expression v2 Library kit.", "GEO Accession:GSM4575942", "RNA-Seq", "TRANSCRIPTOMIC", "cDNA", "PAIRED", "ILLUMINA", "NextSeq 500", null, "SRP265073", null, null, "Nkx3-2-WT-4_S4_R1_001.fastq.gz Nkx3-2-WT-4_S4_R2_001.fastq.gz", "fastq fastq", 12792371587.0, 86758219.0, "GSM4575942 r4", "0:27 1:120.45", "A:3620447166;C:2712466949;G:3120686582;T:3299001093;N:39769797", 27, 120, null, null, 3620447166, 2712466949, 3120686582, 3299001093, 39769797, "SRX8413197", "SRS6725508", "SRA1080696", "GEO", "Smeeton Lab, Rehabilitation and Regenerative Medicine, Columbia University Irving Medical Center", 2, 0.00534, 0.94032, 0.00143, 0.13395, 0.99159, 0.87338, 0.53475, 0.45536, 27, 120, "T", "B", "sc-like readlen", "illumina", "nextseq", "3prime", "cdna_unspecified", "unknown", "sc", "single_cell_droplet", "10x", null, "United States", "2020-05-28", "Larval", "Larval", "Bone or Cartilage", "Skeletal Element"]], "truncated": false, "filtered_table_rows_count": 36, "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], 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