Identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.

The transcription factor etsrp/Er71/Etv2 is a master control gene for vasculogenesis in all species studied to date. It is also required for hematopoiesis in zebrafish and mice. Several novel genes expressed in vasculature have been identified through transcriptional profiling of zebrafish embryos o...

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Main Authors: Gustavo Gomez, Jae-Hyung Lee, Matthew B Veldman, Jing Lu, Xinshu Xiao, Shuo Lin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22438865/?tool=EBI
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spelling doaj-cd93bc4cac0a4717bfae0e9a0b64977e2021-03-04T12:37:38ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0173e3165810.1371/journal.pone.0031658Identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.Gustavo GomezJae-Hyung LeeMatthew B VeldmanJing LuXinshu XiaoShuo LinThe transcription factor etsrp/Er71/Etv2 is a master control gene for vasculogenesis in all species studied to date. It is also required for hematopoiesis in zebrafish and mice. Several novel genes expressed in vasculature have been identified through transcriptional profiling of zebrafish embryos overexpressing etsrp by microarrays. Here we re-examined this transcriptional profile by Illumina RNA-sequencing technology, revealing a substantially increased number of candidate genes regulated by etsrp. Expression studies of 50 selected candidate genes from this dataset resulted in the identification of 39 new genes that are expressed in vascular cells. Regulation of these genes by etsrp was confirmed by their ectopic induction in etsrp overexpressing and decreased expression in etsrp deficient embryos. Our studies demonstrate the effectiveness of the RNA-sequencing technology to identify biologically relevant genes in zebrfish and produced a comprehensive profile of genes previously unexplored in vascular endothelial cell biology.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22438865/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Gustavo Gomez
Jae-Hyung Lee
Matthew B Veldman
Jing Lu
Xinshu Xiao
Shuo Lin
spellingShingle Gustavo Gomez
Jae-Hyung Lee
Matthew B Veldman
Jing Lu
Xinshu Xiao
Shuo Lin
Identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.
PLoS ONE
author_facet Gustavo Gomez
Jae-Hyung Lee
Matthew B Veldman
Jing Lu
Xinshu Xiao
Shuo Lin
author_sort Gustavo Gomez
title Identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.
title_short Identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.
title_full Identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.
title_fullStr Identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.
title_full_unstemmed Identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.
title_sort identification of vascular and hematopoietic genes downstream of etsrp by deep sequencing in zebrafish.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description The transcription factor etsrp/Er71/Etv2 is a master control gene for vasculogenesis in all species studied to date. It is also required for hematopoiesis in zebrafish and mice. Several novel genes expressed in vasculature have been identified through transcriptional profiling of zebrafish embryos overexpressing etsrp by microarrays. Here we re-examined this transcriptional profile by Illumina RNA-sequencing technology, revealing a substantially increased number of candidate genes regulated by etsrp. Expression studies of 50 selected candidate genes from this dataset resulted in the identification of 39 new genes that are expressed in vascular cells. Regulation of these genes by etsrp was confirmed by their ectopic induction in etsrp overexpressing and decreased expression in etsrp deficient embryos. Our studies demonstrate the effectiveness of the RNA-sequencing technology to identify biologically relevant genes in zebrfish and produced a comprehensive profile of genes previously unexplored in vascular endothelial cell biology.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22438865/?tool=EBI
work_keys_str_mv AT gustavogomez identificationofvascularandhematopoieticgenesdownstreamofetsrpbydeepsequencinginzebrafish
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AT matthewbveldman identificationofvascularandhematopoieticgenesdownstreamofetsrpbydeepsequencinginzebrafish
AT jinglu identificationofvascularandhematopoieticgenesdownstreamofetsrpbydeepsequencinginzebrafish
AT xinshuxiao identificationofvascularandhematopoieticgenesdownstreamofetsrpbydeepsequencinginzebrafish
AT shuolin identificationofvascularandhematopoieticgenesdownstreamofetsrpbydeepsequencinginzebrafish
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