BRD3 and BRD4 BET Bromodomain Proteins Differentially Regulate Skeletal Myogenesis
Abstract Myogenic differentiation proceeds through a highly coordinated cascade of gene activation that necessitates epigenomic changes in chromatin structure. Using a screen of small molecule epigenetic probes we identified three compounds which inhibited myogenic differentiation in C2C12 myoblasts...
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2017-07-01
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doaj-d950695199844891be7ec67ea14b25962020-12-08T00:34:18ZengNature Publishing GroupScientific Reports2045-23222017-07-017111610.1038/s41598-017-06483-7BRD3 and BRD4 BET Bromodomain Proteins Differentially Regulate Skeletal MyogenesisThomas C. Roberts0Usue Etxaniz1Alessandra Dall’Agnese2Shwu-Yuan Wu3Cheng-Ming Chiang4Paul E. Brennan5Matthew J. A. Wood6Pier Lorenzo Puri7Sanford Burnham Prebys Medical Discovery Institute, Development, Aging and Regeneration ProgramSanford Burnham Prebys Medical Discovery Institute, Development, Aging and Regeneration ProgramSanford Burnham Prebys Medical Discovery Institute, Development, Aging and Regeneration ProgramSimmons Comprehensive Cancer Center, University of Texas Southwestern Medical CenterSimmons Comprehensive Cancer Center, University of Texas Southwestern Medical CenterStructural Genomics Consortium and Target Discovery Institute, Nuffield Department of Clinical Medicine, University of OxfordDepartment of Physiology, Anatomy and Genetics, University of OxfordSanford Burnham Prebys Medical Discovery Institute, Development, Aging and Regeneration ProgramAbstract Myogenic differentiation proceeds through a highly coordinated cascade of gene activation that necessitates epigenomic changes in chromatin structure. Using a screen of small molecule epigenetic probes we identified three compounds which inhibited myogenic differentiation in C2C12 myoblasts; (+)-JQ1, PFI-1, and Bromosporine. These molecules target Bromodomain and Extra Terminal domain (BET) proteins, which are epigenetic readers of acetylated histone lysine tail residues. BETi-mediated anti-myogenic effects were also observed in a model of MYOD1-mediated myogenic conversion of human fibroblasts, and in primary mouse and human myoblasts. All three BET proteins BRD2, BRD3 and BRD4 exhibited distinct and dynamic patterns of protein expression over the course of differentiation without concomitant changes in mRNA levels, suggesting that BET proteins are regulated at the post-transcriptional level. Specific BET protein knockdown by RNA interference revealed that BRD4 was required for myogenic differentiation, whereas BRD3 down-regulation resulted in enhanced myogenic differentiation. ChIP experiments revealed a preferential binding of BRD4 to the Myog promoter during C2C12 myoblast differentiation, co-incident with increased levels of H3K27 acetylation. These results have identified an essential role for BET proteins in the regulation of skeletal myogenesis, and assign distinct functions to BRD3 and BRD4.https://doi.org/10.1038/s41598-017-06483-7 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Thomas C. Roberts Usue Etxaniz Alessandra Dall’Agnese Shwu-Yuan Wu Cheng-Ming Chiang Paul E. Brennan Matthew J. A. Wood Pier Lorenzo Puri |
spellingShingle |
Thomas C. Roberts Usue Etxaniz Alessandra Dall’Agnese Shwu-Yuan Wu Cheng-Ming Chiang Paul E. Brennan Matthew J. A. Wood Pier Lorenzo Puri BRD3 and BRD4 BET Bromodomain Proteins Differentially Regulate Skeletal Myogenesis Scientific Reports |
author_facet |
Thomas C. Roberts Usue Etxaniz Alessandra Dall’Agnese Shwu-Yuan Wu Cheng-Ming Chiang Paul E. Brennan Matthew J. A. Wood Pier Lorenzo Puri |
author_sort |
Thomas C. Roberts |
title |
BRD3 and BRD4 BET Bromodomain Proteins Differentially Regulate Skeletal Myogenesis |
title_short |
BRD3 and BRD4 BET Bromodomain Proteins Differentially Regulate Skeletal Myogenesis |
title_full |
BRD3 and BRD4 BET Bromodomain Proteins Differentially Regulate Skeletal Myogenesis |
title_fullStr |
BRD3 and BRD4 BET Bromodomain Proteins Differentially Regulate Skeletal Myogenesis |
title_full_unstemmed |
BRD3 and BRD4 BET Bromodomain Proteins Differentially Regulate Skeletal Myogenesis |
title_sort |
brd3 and brd4 bet bromodomain proteins differentially regulate skeletal myogenesis |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2017-07-01 |
description |
Abstract Myogenic differentiation proceeds through a highly coordinated cascade of gene activation that necessitates epigenomic changes in chromatin structure. Using a screen of small molecule epigenetic probes we identified three compounds which inhibited myogenic differentiation in C2C12 myoblasts; (+)-JQ1, PFI-1, and Bromosporine. These molecules target Bromodomain and Extra Terminal domain (BET) proteins, which are epigenetic readers of acetylated histone lysine tail residues. BETi-mediated anti-myogenic effects were also observed in a model of MYOD1-mediated myogenic conversion of human fibroblasts, and in primary mouse and human myoblasts. All three BET proteins BRD2, BRD3 and BRD4 exhibited distinct and dynamic patterns of protein expression over the course of differentiation without concomitant changes in mRNA levels, suggesting that BET proteins are regulated at the post-transcriptional level. Specific BET protein knockdown by RNA interference revealed that BRD4 was required for myogenic differentiation, whereas BRD3 down-regulation resulted in enhanced myogenic differentiation. ChIP experiments revealed a preferential binding of BRD4 to the Myog promoter during C2C12 myoblast differentiation, co-incident with increased levels of H3K27 acetylation. These results have identified an essential role for BET proteins in the regulation of skeletal myogenesis, and assign distinct functions to BRD3 and BRD4. |
url |
https://doi.org/10.1038/s41598-017-06483-7 |
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