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组蛋白和 PRMT5 相关蛋白 COPR5 对于肌生成分化是必需的。

The histone- and PRMT5-associated protein COPR5 is required for myogenic differentiation.

机构信息

Institut de Génétique Moléculaire de Montpellier, CNRS, UMR5535/IFR122, 1919 route de Mende, 34293 Montpellier cedex 5, France.

出版信息

Cell Death Differ. 2012 May;19(5):900-8. doi: 10.1038/cdd.2011.193. Epub 2011 Dec 23.

Abstract

Myogenic differentiation requires the coordination between permanent cell cycle withdrawal, mediated by members of the cyclin-dependent kinase inhibitor (CKI) family, and activation of a cascade of myogenic transcription factors, particularly MYOGENIN (MYOG). Recently, it has been reported that the Protein aRginine Methyl Transferase PRMT5 modulates the early phase of induction of MYOG expression. Here, we show that the histone- and PRMT5-associated protein COPR5 (cooperator of PRMT5) is required for myogenic differentiation. C2C12 cells, in which COPR5 had been silenced, could not irreversibly exit the cell cycle and differentiate into muscle cells. This phenotype might be explained by the finding that, in cells in which COPR5 was downregulated, p21 and MYOG induction was strongly reduced and PRMT5 recruitment to the promoters of these genes was also altered. Moreover, we suggest that COPR5 interaction with the Runt-related transcription factor 1 (RUNX1)-core binding factor-β (CBFβ) complex contributes to targeting the COPR5-PRMT5 complex to these promoters. Finally, we present evidence that COPR5 depletion delayed the in vivo regeneration of cardiotoxin-injured mouse skeletal muscles. Altogether, these data extend the role of COPR5 from an adaptor protein required for nuclear functions of PRMT5 to an essential coordinator of myogenic differentiation.

摘要

成肌分化需要细胞周期永久性退出的协调,这由细胞周期蛋白依赖性激酶抑制剂 (CKI) 家族成员介导,并且需要激活一连串的成肌转录因子,特别是 MYOGENIN (MYOG)。最近,有报道称蛋白精氨酸甲基转移酶 PRMT5 调节 MYOG 表达的早期诱导阶段。在这里,我们表明组蛋白和 PRMT5 相关蛋白 COPR5(PRMT5 的协同因子)是成肌分化所必需的。沉默了 COPR5 的 C2C12 细胞无法不可逆地退出细胞周期并分化为肌肉细胞。这一表型可能是由于发现,在下调 COPR5 的细胞中,p21 和 MYOG 的诱导强烈减少,并且 PRMT5 募集到这些基因的启动子也发生改变。此外,我们认为 COPR5 与 Runt 相关转录因子 1 (RUNX1)-核心结合因子-β (CBFβ) 复合物的相互作用有助于将 COPR5-PRMT5 复合物靶向这些启动子。最后,我们提供了证据表明,COPR5 耗竭延迟了心脏毒素损伤的小鼠骨骼肌的体内再生。总之,这些数据将 COPR5 的作用从 PRMT5 核功能所必需的衔接蛋白扩展到成肌分化的重要协调蛋白。

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