Cited3 activates Mef2c to control muscle cell differentiation and survival

Summary Vertebrate muscle development occurs through sequential differentiation of cells residing in somitic mesoderm – a process that is largely governed by transcriptional regulators. Our recent spatiotemporal microarray study in zebrafish has identified functionally uncharacterized transcriptiona...

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Main Authors: Gnanapackiam Sheela Devakanmalai, Hasan E. Zumrut, Ertuğrul M. Özbudak
Format: Article
Language:English
Published: The Company of Biologists 2013-04-01
Series:Biology Open
Subjects:
Online Access:http://bio.biologists.org/content/2/5/505
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spelling doaj-f369b7e83d6545b5a0e95da6042065692021-06-02T09:07:21ZengThe Company of BiologistsBiology Open2046-63902013-04-012550551410.1242/bio.2013255020132550Cited3 activates Mef2c to control muscle cell differentiation and survivalGnanapackiam Sheela DevakanmalaiHasan E. ZumrutErtuğrul M. ÖzbudakSummary Vertebrate muscle development occurs through sequential differentiation of cells residing in somitic mesoderm – a process that is largely governed by transcriptional regulators. Our recent spatiotemporal microarray study in zebrafish has identified functionally uncharacterized transcriptional regulators that are expressed at the initial stages of myogenesis. cited3 is one such novel gene encoding a transcriptional coactivator, which is expressed in the precursors of oxidative slow-twitch myofibers. Our experiments placed cited3 into a gene regulatory network, where it acts downstream of Hedgehog signaling and myoD/myf5 but upstream of mef2c. Knockdown of expression of cited3 by antisense morpholino oligonucleotides impaired muscle cell differentiation and growth, caused muscle cell death and eventually led to total immotility. Transplantation experiments demonstrated that Cited3 cell-autonomously activates the expression of mef2c in slow myofibers, while it non-cell-autonomously regulates expression of structural genes in fast myofibers. Restoring expression of cited3 or mef2c rescued all the cited3 loss-of-function phenotypes. Protein truncation experiments revealed the functional necessity of C-terminally conserved domain of Cited3, which is known to mediate interactions of Cited-family proteins with histone acetylases. Our findings demonstrate that Cited3 is a critical transcriptional coactivator functioning during muscle differentiation and its absence leads to defects in terminal differentiation and survival of muscle cells.http://bio.biologists.org/content/2/5/505MyogenesisMuscle cell deathZebrafishmef2cCitedDifferentiation
collection DOAJ
language English
format Article
sources DOAJ
author Gnanapackiam Sheela Devakanmalai
Hasan E. Zumrut
Ertuğrul M. Özbudak
spellingShingle Gnanapackiam Sheela Devakanmalai
Hasan E. Zumrut
Ertuğrul M. Özbudak
Cited3 activates Mef2c to control muscle cell differentiation and survival
Biology Open
Myogenesis
Muscle cell death
Zebrafish
mef2c
Cited
Differentiation
author_facet Gnanapackiam Sheela Devakanmalai
Hasan E. Zumrut
Ertuğrul M. Özbudak
author_sort Gnanapackiam Sheela Devakanmalai
title Cited3 activates Mef2c to control muscle cell differentiation and survival
title_short Cited3 activates Mef2c to control muscle cell differentiation and survival
title_full Cited3 activates Mef2c to control muscle cell differentiation and survival
title_fullStr Cited3 activates Mef2c to control muscle cell differentiation and survival
title_full_unstemmed Cited3 activates Mef2c to control muscle cell differentiation and survival
title_sort cited3 activates mef2c to control muscle cell differentiation and survival
publisher The Company of Biologists
series Biology Open
issn 2046-6390
publishDate 2013-04-01
description Summary Vertebrate muscle development occurs through sequential differentiation of cells residing in somitic mesoderm – a process that is largely governed by transcriptional regulators. Our recent spatiotemporal microarray study in zebrafish has identified functionally uncharacterized transcriptional regulators that are expressed at the initial stages of myogenesis. cited3 is one such novel gene encoding a transcriptional coactivator, which is expressed in the precursors of oxidative slow-twitch myofibers. Our experiments placed cited3 into a gene regulatory network, where it acts downstream of Hedgehog signaling and myoD/myf5 but upstream of mef2c. Knockdown of expression of cited3 by antisense morpholino oligonucleotides impaired muscle cell differentiation and growth, caused muscle cell death and eventually led to total immotility. Transplantation experiments demonstrated that Cited3 cell-autonomously activates the expression of mef2c in slow myofibers, while it non-cell-autonomously regulates expression of structural genes in fast myofibers. Restoring expression of cited3 or mef2c rescued all the cited3 loss-of-function phenotypes. Protein truncation experiments revealed the functional necessity of C-terminally conserved domain of Cited3, which is known to mediate interactions of Cited-family proteins with histone acetylases. Our findings demonstrate that Cited3 is a critical transcriptional coactivator functioning during muscle differentiation and its absence leads to defects in terminal differentiation and survival of muscle cells.
topic Myogenesis
Muscle cell death
Zebrafish
mef2c
Cited
Differentiation
url http://bio.biologists.org/content/2/5/505
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AT hasanezumrut cited3activatesmef2ctocontrolmusclecelldifferentiationandsurvival
AT ertugrulmozbudak cited3activatesmef2ctocontrolmusclecelldifferentiationandsurvival
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