Genome-wide mapping of Sox6 binding sites in skeletal muscle reveals both direct and indirect regulation of muscle terminal differentiation by Sox6

被引:53
作者
An, Chung-Il [1 ]
Dong, Yao [1 ]
Hagiwara, Nobuko [1 ]
机构
[1] Univ Calif Davis, Dept Internal Med, Div Cardiovasc Med, Davis, CA 95616 USA
基金
美国国家卫生研究院;
关键词
MYOSIN HEAVY-CHAIN; TRANSCRIPTIONAL COACTIVATOR PGC-1-ALPHA; FETAL GENE PROGRAM; FIBER-TYPE; MYOGENIC DIFFERENTIATION; NEMALINE MYOPATHY; DOWN-REGULATION; SLOW MYOSIN; EXPRESSION; FAMILY;
D O I
10.1186/1471-213X-11-59
中图分类号
Q [生物科学];
学科分类号
090105 [作物生产系统与生态工程];
摘要
Background: Sox6 is a multi-faceted transcription factor involved in the terminal differentiation of many different cell types in vertebrates. It has been suggested that in mice as well as in zebrafish Sox6 plays a role in the terminal differentiation of skeletal muscle by suppressing transcription of slow fiber specific genes. In order to understand how Sox6 coordinately regulates the transcription of multiple fiber type specific genes during muscle development, we have performed ChIP-seq analyses to identify Sox6 target genes in mouse fetal myotubes and generated muscle-specific Sox6 knockout (KO) mice to determine the Sox6 null muscle phenotype in adult mice. Results: We have identified 1,066 Sox6 binding sites using mouse fetal myotubes. The Sox6 binding sites were found to be associated with slow fiber-specific, cardiac, and embryonic isoform genes that are expressed in the sarcomere as well as transcription factor genes known to play roles in muscle development. The concurrently performed RNA polymerase II (Pol II) ChIP-seq analysis revealed that 84% of the Sox6 peak-associated genes exhibited little to no binding of Pol II, suggesting that the majority of the Sox6 target genes are transcriptionally inactive. These results indicate that Sox6 directly regulates terminal differentiation of muscle by affecting the expression of sarcomere protein genes as well as indirectly through influencing the expression of transcription factors relevant to muscle development. Gene expression profiling of Sox6 KO skeletal and cardiac muscle revealed a significant increase in the expression of the genes associated with Sox6 binding. In the absence of the Sox6 gene, there was dramatic upregulation of slow fiber-specific, cardiac, and embryonic isoform gene expression in Sox6 KO skeletal muscle and fetal isoform gene expression in Sox6 KO cardiac muscle, thus confirming the role Sox6 plays as a transcriptional suppressor in muscle development. Conclusions: Our present data indicate that during development, Sox6 functions as a transcriptional suppressor of fiber type-specific and developmental isoform genes to promote functional specification of muscle which is critical for optimum muscle performance and health.
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页数:21
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共 121 条
[1]
Myosin heavy chain isoforms in postnatal muscle development of mice [J].
Agbulut, O ;
Noirez, P ;
Beaumont, F ;
Butler-Browne, G .
BIOLOGY OF THE CELL, 2003, 95 (06) :399-406
[2]
ErbB2 is required for muscle spindle and myoblast cell survival [J].
Andrechek, ER ;
Hardy, WR ;
Girgis-Gabardo, AA ;
Perry, RLS ;
Butler, R ;
Graham, FL ;
Kahn, RC ;
Rudnicki, MA ;
Muller, WJ .
MOLECULAR AND CELLULAR BIOLOGY, 2002, 22 (13) :4714-4722
[3]
Cooperative Synergy between NFAT and MyoD Regulates Myogenin Expression and Myogenesis [J].
Armand, Anne-Sophie ;
Bourajjaj, Meriem ;
Martinez-Martinez, Sara ;
el Azzouzi, Hamid ;
da Costa Martins, Paula A. ;
Hatzis, Pantelis ;
Seidler, Tim ;
Miguel Redondo, Juan ;
De Windt, Leon J. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (43) :29004-29010
[4]
Bailey T L, 1994, Proc Int Conf Intell Syst Mol Biol, V2, P28
[5]
A web-accessible complete transcriptome of normal human and DMD muscle [J].
Bakay, M ;
Zhao, P ;
Chen, J ;
Hoffman, EP .
NEUROMUSCULAR DISORDERS, 2002, 12 :S125-S141
[6]
MicroRNAs: Target Recognition and Regulatory Functions [J].
Bartel, David P. .
CELL, 2009, 136 (02) :215-233
[7]
Uncoupling of Expression of an Intronic MicroRNA and Its Myosin Host Gene by Exon Skipping [J].
Bell, Matthew L. ;
Buvoli, Massimo ;
Leinwand, Leslie A. .
MOLECULAR AND CELLULAR BIOLOGY, 2010, 30 (08) :1937-1945
[8]
Calcium ion in skeletal muscle:: Its crucial role for muscle function, plasticity, and disease [J].
Berchtold, MW ;
Brinkmeier, H ;
Müntener, M .
PHYSIOLOGICAL REVIEWS, 2000, 80 (03) :1215-1265
[9]
Cellular heterogeneity during vertebrate skeletal muscle development [J].
Biressi, Stefano ;
Molinaro, Mario ;
Cossu, Giulio .
DEVELOPMENTAL BIOLOGY, 2007, 308 (02) :281-293
[10]
Sole-Search: an integrated analysis program for peak detection and functional annotation using ChIP-seq data [J].
Blahnik, Kimberly R. ;
Dou, Lei ;
O'Geen, Henriette ;
McPhillips, Timothy ;
Xu, Xiaoqin ;
Cao, Alina R. ;
Iyengar, Sushma ;
Nicolet, Charles M. ;
Ludaescher, Bertram ;
Korf, Ian ;
Farnham, Peggy J. .
NUCLEIC ACIDS RESEARCH, 2010, 38 (03) :e13.1-e13.17