首页> 外文期刊>The international journal of biochemistry and cell biology >Calpastatin in rat myoblasts: transient diminution and decreased phosphorylation depend on myogenin-directed myoblast differentiation.
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Calpastatin in rat myoblasts: transient diminution and decreased phosphorylation depend on myogenin-directed myoblast differentiation.

机译:大鼠成肌细胞中的Calpastatin:瞬时减少和磷酸化降低取决于成肌细胞因子定向的成肌细胞分化。

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摘要

The formation of skeletal muscle fibers involves cessation of myoblast division, followed by myoblast differentiation and fusion to multinucleated myofibers. The myogenic regulatory factor myogenin appears at the onset of differentiation; it is required for muscle fiber formation, and cannot be replaced by other factors. The myogenin-dependent pathways and targets are not fully known. Previous studies, indicating an involvement of calpain-calpastatin and caspase in myoblast fusion, were based on the use of various inhibitors. The availability of myogenin deficient cell lines that are incapable of fusion, but regain the ability to differentiate when transfected with myogenin, provide a convenient means to study calpain-calpastatin and caspase in fusing and non-fusing myoblasts without the use of inhibitors. The differentiating wild type myoblasts exhibit decreased calpastatin phosphorylation, transient diminution in calpastatin mRNA, caspase-1 dependent diminution in calpastatin protein, and calpain-promoted proteolysis. In the myogenin-deficient myoblasts, calpastatin phosphorylation is not diminished, caspase-1 is not activated, calpastatin mRNA and protein are not diminished, and protein degradation does not occur. The myogenin-deficient myoblasts transfected with myogenin gene regain the ability to fuse, and exhibit the alterations in calpastatin and proteolysis observed in the wild type cells. Overall, the results demonstrate that the regulation of calpain in these myoblasts is independent of myogenin. In contrast, the regulation of calpastatin depends on myogenin function. The temporary diminution of calpastatin during myogenin-directed differentiation of myoblasts allows calpain activation and calpain-induced protein degradation, required for myoblast differentiation and fusion.
机译:骨骼肌纤维的形成涉及成肌细胞分裂的停止,随后成肌细胞的分化和融合成多核肌纤维。肌生成调节因子肌生成素出现在分化开始时。它是肌肉纤维形成所必需的,不能被其他因素替代。肌生成素依赖性途径和靶标尚不完全清楚。先前的研究表明,钙蛋白酶-钙蛋白酶抑制剂和胱天蛋白酶参与成肌细胞融合,是基于各种抑制剂的使用。缺乏肌原蛋白缺陷的细胞系无法融合,但在转染肌原蛋白后恢复了分化的能力,为研究钙蛋白酶-钙蛋白酶抑制剂和胱天蛋白酶在融合和非融合成肌细胞中的使用提供了便利的手段,而无需使用抑制剂。分化的野生型成肌细胞表现出钙蛋白酶抑制蛋白的磷酸化降低,钙蛋白酶抑制蛋白mRNA的瞬时减少,钙蛋白酶抑制蛋白中依赖胱天蛋白酶-1的减弱以及钙蛋白酶促进的蛋白水解。在缺乏肌生成素的成肌细胞中,钙蛋白酶抑制素的磷酸化不会减少,caspase-1不会被激活,钙蛋白酶抑制素的mRNA和蛋白质不会减少,并且不会发生蛋白质降解。转染了肌生成素基因的缺乏肌生成素的成肌细胞恢复融合能力,并表现出在野生型细胞中观察到的钙蛋白酶抑制素和蛋白水解的改变。总体而言,结果表明这些成肌细胞中钙蛋白酶的调节独立于肌生成素。相反,钙调他汀的调节取决于肌生成素的功能。肌钙蛋白定向的成肌细胞分化过程中钙蛋白酶抑制素的暂时减少允许成肌细胞分化和融合所需的钙蛋白酶激活和钙蛋白酶诱导的蛋白质降解。

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