Genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative Notch responsive genes.

BACKGROUND:Notch signaling is an evolutionarily conserved developmental pathway. Zebrafish mind bomb (mib) mutants carry mutations on mib gene, which encodes a RING E3 ligase required for Notch activation via Delta/Jagged ubiquitylation and internalization. METHODOLOGY/PRINCIPAL FINDINGS:We examined...

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Main Authors: Ashok Hegde, Nick Chuanxin Qiu, Xuehui Qiu, Steven Hao-Kee Ho, Kenny Qi-Ye Tay, Joshy George, Felicia Soo Lee Ng, Kunde Ramamoorthy Govindarajan, Zhiyuan Gong, Sinnakaruppan Mathavan, Yun-Jin Jiang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2195453?pdf=render
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spelling doaj-9f11261a34b640f889b7c71c529a11492020-11-24T21:50:34ZengPublic Library of Science (PLoS)PLoS ONE1932-62032008-01-0131e147910.1371/journal.pone.0001479Genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative Notch responsive genes.Ashok HegdeNick Chuanxin QiuXuehui QiuSteven Hao-Kee HoKenny Qi-Ye TayJoshy GeorgeFelicia Soo Lee NgKunde Ramamoorthy GovindarajanZhiyuan GongSinnakaruppan MathavanYun-Jin JiangBACKGROUND:Notch signaling is an evolutionarily conserved developmental pathway. Zebrafish mind bomb (mib) mutants carry mutations on mib gene, which encodes a RING E3 ligase required for Notch activation via Delta/Jagged ubiquitylation and internalization. METHODOLOGY/PRINCIPAL FINDINGS:We examined the mib mutants for defects in pancreas development using in situ hybridization and GFP expression analysis of pancreas-specific GFP lines, carried out the global gene expression profile analysis of three different mib mutant alleles and validated the microarray data using real-time PCR and fluorescent double in situ hybridization. Our study showed that the mib mutants have diminished exocrine pancreas and this defect was most severe in mib(ta52b) followed by mib(m132) and then mib(tfi91), which is consistent with the compromised Notch activity found in corresponding mib mutant alleles. Global expression profile analysis of mib mutants showed that there is a significant difference in gene expression profile of wt and three mib mutant alleles. There are 91 differentially expressed genes that are common to all three mib alleles. Through detailed analysis of microarray data, we have identified several previously characterized genes and some putative Notch-responsive genes involved in pancreas development. Moreover, results from real-time PCR and fluorescent double in situ hybridization were largely consistent with microarray data. CONCLUSIONS/SIGNIFICANCE:This study provides, for the first time, a global gene expression profile in mib mutants generating useful genomic resources and providing an opportunity to identify the function of novel genes involved in Notch signaling and Notch-regulated developmental processes.http://europepmc.org/articles/PMC2195453?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ashok Hegde
Nick Chuanxin Qiu
Xuehui Qiu
Steven Hao-Kee Ho
Kenny Qi-Ye Tay
Joshy George
Felicia Soo Lee Ng
Kunde Ramamoorthy Govindarajan
Zhiyuan Gong
Sinnakaruppan Mathavan
Yun-Jin Jiang
spellingShingle Ashok Hegde
Nick Chuanxin Qiu
Xuehui Qiu
Steven Hao-Kee Ho
Kenny Qi-Ye Tay
Joshy George
Felicia Soo Lee Ng
Kunde Ramamoorthy Govindarajan
Zhiyuan Gong
Sinnakaruppan Mathavan
Yun-Jin Jiang
Genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative Notch responsive genes.
PLoS ONE
author_facet Ashok Hegde
Nick Chuanxin Qiu
Xuehui Qiu
Steven Hao-Kee Ho
Kenny Qi-Ye Tay
Joshy George
Felicia Soo Lee Ng
Kunde Ramamoorthy Govindarajan
Zhiyuan Gong
Sinnakaruppan Mathavan
Yun-Jin Jiang
author_sort Ashok Hegde
title Genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative Notch responsive genes.
title_short Genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative Notch responsive genes.
title_full Genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative Notch responsive genes.
title_fullStr Genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative Notch responsive genes.
title_full_unstemmed Genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative Notch responsive genes.
title_sort genomewide expression analysis in zebrafish mind bomb alleles with pancreas defects of different severity identifies putative notch responsive genes.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2008-01-01
description BACKGROUND:Notch signaling is an evolutionarily conserved developmental pathway. Zebrafish mind bomb (mib) mutants carry mutations on mib gene, which encodes a RING E3 ligase required for Notch activation via Delta/Jagged ubiquitylation and internalization. METHODOLOGY/PRINCIPAL FINDINGS:We examined the mib mutants for defects in pancreas development using in situ hybridization and GFP expression analysis of pancreas-specific GFP lines, carried out the global gene expression profile analysis of three different mib mutant alleles and validated the microarray data using real-time PCR and fluorescent double in situ hybridization. Our study showed that the mib mutants have diminished exocrine pancreas and this defect was most severe in mib(ta52b) followed by mib(m132) and then mib(tfi91), which is consistent with the compromised Notch activity found in corresponding mib mutant alleles. Global expression profile analysis of mib mutants showed that there is a significant difference in gene expression profile of wt and three mib mutant alleles. There are 91 differentially expressed genes that are common to all three mib alleles. Through detailed analysis of microarray data, we have identified several previously characterized genes and some putative Notch-responsive genes involved in pancreas development. Moreover, results from real-time PCR and fluorescent double in situ hybridization were largely consistent with microarray data. CONCLUSIONS/SIGNIFICANCE:This study provides, for the first time, a global gene expression profile in mib mutants generating useful genomic resources and providing an opportunity to identify the function of novel genes involved in Notch signaling and Notch-regulated developmental processes.
url http://europepmc.org/articles/PMC2195453?pdf=render
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