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Proline isomerase Pin1 represses terminal differentiation and myocyte enhancer factor 2C function in skeletal muscle cells.

机译:脯氨酸异构酶Pin1抑制骨骼肌细胞的终末分化和肌细胞增强因子2C功能。

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摘要

Reversible proline-directed phosphorylation at Ser/Thr-Pro motifs has an essential role in myogenesis, a multistep process strictly regulated by several signaling pathways that impinge on two families of myogenic effectors, the basic helix-loop-helix myogenic transcription factors and the MEF2 (myocyte enhancer factor 2) proteins. The question of how these signals are deciphered by the myogenic effectors remains largely unaddressed. In this study, we show that the peptidyl-prolyl isomerase Pin1, which catalyzes the isomerization of phosphorylated Ser/Thr-Pro peptide bonds to induce conformational changes of its target proteins, acts as an inhibitor of muscle differentiation because its knockdown in myoblasts promotes myotube formation. With the aim of clarifying the mechanism of Pin1 function in skeletal myogenesis, we investigated whether MEF2C, a critical regulator of the myogenic program that is the end point of several signaling pathways, might serve as a/the target for the inhibitory effects of Pin1 on muscle differentiation. We show that Pin1 interacts selectively with phosphorylated MEF2C in skeletal muscle cells, both in vitro and in vivo. The interaction with Pin1 requires two novel critical phospho-Ser/Thr-Pro motifs in MEF2C, Ser(98) and Ser(110), which are phosphorylated in vivo. Overexpression of Pin1 decreases MEF2C stability and activity and its ability to cooperate with MyoD to activate myogenic conversion. Collectively, these findings reveal a novel role for Pin1 as a regulator of muscle terminal differentiation and suggest that Pin1-mediated repression of MEF2C function could contribute to this function.
机译:Ser / Thr-Pro基序上可逆的脯氨酸定向磷酸化在肌发生中起重要作用,这是一个多步过程,受到几个信号通路的调控,这些信号通路影响两个家族的成肌效应子,基本的螺旋-环-螺旋成肌转录因子和MEF2 (肌细胞增强因子2)蛋白。肌源性效应子如何破译这些信号的问题仍未解决。在这项研究中,我们表明肽基脯氨酰异构酶Pin1催化磷酸化的Ser / Thr-Pro肽键的异构化,以诱导其靶蛋白的构象变化,它是肌肉分化的抑制剂,因为其在成肌细胞中的敲低促进了肌管编队。为了阐明Pin1在骨骼肌发生中的作用机理,我们研究了MEF2C是否是Pin1抑制作用的靶点,MEF2C是肌生成程序的关键调节剂,它是多种信号通路的终点。肌肉分化。我们显示,Pin1与骨骼肌细胞中的磷酸化MEF2C选择性地相互作用,在体外和体内。与Pin1的相互作用需要MEF2C中的两个新的关键磷酸化Ser / Thr-Pro基序Ser(98)和Ser(110),它们在体内被磷酸化。 Pin1的过表达降低了MEF2C的稳定性和活性,并降低了其与MyoD协同激活成肌转化的能力。总的来说,这些发现揭示了Pin1作为肌肉末端分化调节剂的新作用,并暗示Pin1介导的MEF2C功能的抑制可能有助于此功能。

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