BAF60c-MyoD复合体为快速转录而调整染色质。

Bioarchitecture Pub Date : 2012-05-01 DOI:10.4161/bioa.20970
Sonia-Vanina Forcales
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引用次数: 13

摘要

SWI/SNF复合体的染色质重塑是激活肌生成特异性基因转录所必需的。我们的工作解决了SWI/SNF如何被招募到肌源性调节区域以响应分化信号的细节。令人惊讶的是,肌肉决定因子MyoD和SWI/SNF亚基BAF60c在肌原性前体细胞中MyoD靶向基因的调控元件上形成复合物。这个brg1缺失的MyoD-BAF60c复合体在转录被激活之前标记了肌生成分化基因的染色质。分化时,p38 α激酶磷酸化保守苏氨酸上的BAF60c可促进MyoD-BAF60c结合到基于brg1的SWI/SNF复合体中,该复合体重塑染色质并激活myod靶基因的转录。BAF60c表达的下调阻止MyoD进入染色质,并阻止活性肌源性转录体的适当负载,从而阻止数百种肌源性基因的表达。我们的数据支持一个前所未有的两步模型,其中(1)预组装的BAF60c-MyoD复合物将肌生成基因的染色质定位为快速转录;(2)染色质结合的BAF60c“感知”肌源性分化线索,并招募活跃的SWI/SNF复合物来重塑染色质,从而实现转录激活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The BAF60c-MyoD complex poises chromatin for rapid transcription.

The BAF60c-MyoD complex poises chromatin for rapid transcription.

The BAF60c-MyoD complex poises chromatin for rapid transcription.

Chromatin remodeling by the SWI/SNF complex is required to activate the transcription of myogenic-specific genes. Our work addressed the details of how SWI/SNF is recruited to myogenic regulatory regions in response to differentiation signals. Surprisingly, the muscle determination factor MyoD and the SWI/SNF subunit BAF60c form a complex on the regulatory elements of MyoD-targeted genes in myogenic precursor cells. This Brg1-devoid MyoD-BAF60c complex flags the chromatin of myogenic-differentiation genes before transcription is activated. On differentiation, BAF60c phosphorylation on a conserved threonine by p38 α kinase promotes the incorporation of MyoD-BAF60c into a Brg1-based SWI/SNF complex, which remodels the chromatin and activates transcription of MyoD-target genes. Downregulation of BAF60c expression prevents MyoD access to the chromatin and the proper loading of an active myogenic transcriptosome preventing the expression of hundreds of myogenic genes. Our data support an unprecedented two-step model by which (1) pre-assembled BAF60c-MyoD complex poises the chromatin of myogenic genes for rapid transcription; (2) chromatin-bound BAF60c "senses" the myogenic differentiation cues and recruits an active SWI/SNF complex to remodel the chromatin allowing transcriptional activation.

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