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RhoA GTPase Regulates M-Cadherin Activity and Myoblast Fusion

机译:RhoA GTPase调节M-钙黏着蛋白活性和成肌细胞融合

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The Rho family of GTP-binding proteins plays critical roles during myogenesis induction. To elucidate their role later during myogenesis, we have analyzed RhoA function during myoblast fusion into myotubes. We find that RhoA activity is rapidly and transiently increased when cells are shifted into differentiation medium and then is decreased until myoblast fusion. RhoA activity must be down-regulated to allow fusion, because expression of a constitutively active form of RhoA (RhoAV14) inhibits this process. RhoAV14 perturbs the expression and localization of M-cadherin, a member of the Ca2+-dependent cell-cell adhesion molecule family that has an essential role in skeletal muscle cell differentiation. This mutant does not affect N-cadherin and other proteins involved in myoblast fusion, β1-integrin and ADAM12. Active RhoA induces the entry of M-cadherin into a degradative pathway and thus decreases its stability in correlation with the monoubiquitination of M-cadherin. Moreover, p120 catenin association with M-cadherin is decreased in RhoAV14-expressing cells, which is partially reverted by the inhibition of the RhoA effector Rho-associated kinase ROCK. ROCK inhibition also restores M-cadherin accumulation at the cell-cell contact sites. We propose that the sustained activation of the RhoA pathway inhibits myoblast fusion through the regulation of p120 activity, which controls cadherin internalization and degradation.
机译:Gho结合蛋白的Rho家族在诱导肌发生过程中起关键作用。为了阐明其在以后的成肌过程中的作用,我们分析了成肌细胞融合入肌管过程中的RhoA功能。我们发现,当细胞转移到分化培养基中后,RhoA活性迅速而短暂地增加,然后下降直至成肌细胞融合。 RhoA活性必须下调才能融合,因为RhoA的组成型活性形式(RhoAV14)的表达会抑制该过程。 RhoAV14干扰M-钙粘着蛋白的表达和定位,M-钙粘着蛋白是依赖Ca 2 + 的细胞粘附分子家族的成员,在骨骼肌细胞分化中起重要作用。该突变体不影响N-钙粘蛋白和成肌细胞融合中涉及的其他蛋白质,β1-整合素和ADAM12。活性RhoA诱导M-钙粘蛋白进入降解途径,因此与M-钙粘蛋白的单泛素化相关地降低了其稳定性。而且,在表达RhoAV14的细胞中p120连环蛋白与M-钙粘蛋白的结合减少,这通过抑制RhoA效应子Rho相关的激酶ROCK而部分逆转。 ROCK抑制还可以恢复M-钙黏着蛋白在细胞与细胞接触部位的积累。我们提出,RhoA途径的持续激活通过调节p120活性(控制钙黏着蛋白的内在化和降解)来抑制成肌细胞融合。

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