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Comparative expression profiling identifies differential roles for Myogenin and p38α MAPK signaling in myogenesis

机译:比较表达谱鉴定肌成蛋白和p38αMAPK信号传导在肌发生中的不同作用

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摘要

Skeletal muscle differentiation is mediated by a complex gene expression program requiring both the muscle-specific transcription factor Myogenin (Myog) and p38α MAPK (p38α) signaling. However, the relative contribution of Myog and p38α to the formation of mature myotubes remains unknown. Here, we have uncoupled the activity of Myog from that of p38α to gain insight into the individual roles of these proteins in myogenesis. Comparative expression profiling confirmed that Myog activates the expression of genes involved in muscle function. Furthermore, we found that in the absence of p38α signaling, Myog expression leads to the down-regulation of genes involved in cell cycle progression. Consistent with this, the expression of Myog is sufficient to induce cell cycle exit. Interestingly, p38α-defective, Myog-expressing myoblasts fail to form multinucleated myotubes, suggesting an important role for p38α in cell fusion. Through the analysis of p38α up-regulated genes, the tetraspanin CD53 was identified as a candidate fusion protein, a role confirmed both ex vivo in primary myoblasts, and in vivo during myofiber regeneration in mice. Thus, our study has revealed an unexpected role for Myog in mediating cell cycle exit and has identified an essential role for p38α in cell fusion through the up-regulation of CD53.
机译:骨骼肌的分化是由复杂的基因表达程序介导的,该程序需要肌肉特异性转录因子Myogenin(Myog)和p38αMAPK(p38α)信号传导。然而,Myog和p38α对成熟肌管形成的相对贡献仍然未知。在这里,我们将Myog的活性与p38α的活性分开,以深入了解这些蛋白在肌发生中的作用。比较表达谱证实了Myog激活了参与肌肉功能的基因的表达。此外,我们发现在不存在p38α信号的情况下,Myog表达导致参与细胞周期进程的基因下调。与此一致,Myog的表达足以诱导细胞周期退出。有趣的是,p38α缺陷型表达Myog的成肌细胞不能形成多核肌管,这提示p38α在细胞融合中起着重要作用。通过分析p38α上调的基因,确定了四跨膜蛋白CD53为候选融合蛋白,该作用在原代成肌细胞中既活体外,又在小鼠肌纤维再生过程中均得到证实。因此,我们的研究揭示了Myog在介导细胞周期退出中的出乎意料的作用,并通过CD53的上调确定了p38α在细胞融合中的重要作用。

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