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Six1 调控成体肌肉祖细胞中的 MyoD 表达。

Six1 regulates MyoD expression in adult muscle progenitor cells.

机构信息

Ottawa Institute of Systems Biology, University of Ottawa, Ottawa, Ontario, Canada.

出版信息

PLoS One. 2013 Jun 28;8(6):e67762. doi: 10.1371/journal.pone.0067762. Print 2013.

Abstract

Quiescent satellite cells are myogenic progenitors that enable regeneration of skeletal muscle. One of the early events of satellite cell activation following myotrauma is the induction of the myogenic regulatory factor MyoD, which eventually induces terminal differentiation and muscle function gene expression. The purpose of this study was to elucidate the mechanism by which MyoD is induced during activation of satellite cells in mouse muscle undergoing regeneration. We show that Six1, a transcription factor essential for embryonic myogenesis, also regulates MyoD expression in muscle progenitor cells. Six1 knock-down by RNA interference leads to decreased expression of MyoD in myoblasts. Chromatin immunoprecipitation assays reveal that Six1 binds the Core Enhancer Region of MyoD. Further, transcriptional reporter assays demonstrate that Core Enhancer Region reporter gene activity in myoblasts and in regenerating muscle depends on the expression of Six1 and on Six1 binding sites. Finally, we provide evidence indicating that Six1 is required for the proper chromatin structure at the Core Enhancer Region, as well as for MyoD binding at its own enhancer. Together, our results reveal that MyoD expression in satellite cells depends on Six1, supporting the idea that Six1 plays an important role in adult myogenesis, in addition to its role in embryonic muscle formation.

摘要

静止卫星细胞是成肌祖细胞,能够使骨骼肌再生。肌损伤后卫星细胞激活的早期事件之一是诱导成肌调节因子 MyoD,最终诱导终末分化和肌肉功能基因表达。本研究的目的是阐明在经历再生的小鼠肌肉中卫星细胞激活过程中 MyoD 被诱导的机制。我们表明,Six1,一种对胚胎成肌作用至关重要的转录因子,也调节肌肉祖细胞中的 MyoD 表达。通过 RNA 干扰敲低 Six1 会导致成肌细胞中 MyoD 的表达减少。染色质免疫沉淀分析显示 Six1 结合 MyoD 的核心增强子区域。此外,转录报告基因分析表明,成肌细胞和再生肌肉中的核心增强子区域报告基因活性依赖于 Six1 的表达及其结合位点。最后,我们提供的证据表明,Six1 是核心增强子区域适当染色质结构以及 MyoD 在其自身增强子上结合所必需的。总之,我们的结果表明,卫星细胞中的 MyoD 表达依赖于 Six1,这支持了 Six1 在胚胎肌肉形成之外,在成人成肌作用中也发挥重要作用的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d08d/3695946/e71726fef2ee/pone.0067762.g001.jpg

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