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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Possible functions of p94 in connectin-mediated signaling pathways in skeletal muscle cells.
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Possible functions of p94 in connectin-mediated signaling pathways in skeletal muscle cells.

机译:p94在骨骼肌细胞中connectin介导的信号通路中的可能功能。

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Calpains are intracellular Ca(2+)-requiring 'modulator proteases', which modulate cellular functions by limited and specific proteolysis. p94/calpain3, a skeletal-muscle specific calpain, has been one of the representative calpain species which indicates physiological importance of calpain proteolytic system; a defect of proteolytic activity of p94 causes limb girdle muscular dystrophy type2A (LGMD2A, also called 'calpainopathy'). Immunohistochemical studies on myofibrils showed that p94 localizes at the Z- and N2-line regions of sarcomeres. It was also identified by the yeast two hybrid studies that p94 binds to the N2A and M-line regions of connectin. Furthermore, genetic studies indicate that p94 is indispensable for skeletal muscles, although its precise functions are still unclear. Interestingly, connectin provides sarcomere not only with elasticity but also with binding sites to various multi-functional proteins such as muscle ankyrin repeat proteins (MARPs), muscle RING finger proteins (MURFs), titin-capping protein (T-cap/telethonin), sarcomeric-alpha-actinin, p94 etc. Binding sites for these proteins are not randomly placed along connectin but rather accumulated in the Z-, N2-, and/or M-line regions, indicating the existence of 'signal complexes' unique to each regions. The concept of these complexes are strongly supported by the facts that mutations of connectin or its binding proteins in these regions severely perturb muscle functions, as in the case of LGMD2A caused by mutations in the p94 gene. Therefore, it is hypothesized that the 'signal complexes' in the Z-, N2-, and M-lines modulate muscle cell homeostasis by transducing signals of external stimulations/stresses to trigger appropriate response at various different cellular events such as protein modification and gene expressions. In this article, we performed detailed immunohistochemical analyses of p94 on isolated single myofibers. Together with recent findings about p94, it is suggested that sarcomeric localization of p94, especially its M-line localization, is affected by the combination of cellular contexts such as contractile status of myofibrils, fiber type compositions, sarcomeric maturation, and the composition of the 'signal complexes' in each region.
机译:钙蛋白酶是细胞内需要Ca(2+)的'调节蛋白酶',通过有限和特定的蛋白水解作用来调节细胞功能。 p94 / calpain3是骨骼肌特异性的钙蛋白酶,已成为代表钙蛋白酶的物种之一,表明钙蛋白酶蛋白水解系统具有重要的生理意义。 p94的蛋白水解活性缺陷会导致四肢带状肌营养不良2A型(LGMD2A,也称为“钙皮病”)。对肌原纤维的免疫组织化学研究表明,p94定位在肉瘤的Z-和N2线区域。酵母菌的两项杂交研究还证实,p94与连接蛋白的N2A和M线区域结合。此外,遗传研究表明,p94对于骨骼肌是必不可少的,尽管其确切功能尚不清楚。有趣的是,connectin不仅为肌节提供了弹性,而且还提供了与多种多功能蛋白(例如肌肉锚蛋白重复蛋白(MARPs),肌肉无名指蛋白(MURFs),肌钙蛋白封顶蛋白(T-cap / telethonin), sarcomeric-α-actinin,p94等。这些蛋白的结合位点不是沿着connectin随机放置,而是积累在Z-,N2-和/或M线区域,表明每个信号线都存在独特的“信号复合物”地区。这些复合物的概念得到以下事实的强烈支持:连接蛋白或其结合蛋白在这些区域中的突变会严重扰乱肌肉功能,就像由p94基因突变引起的LGMD2A一样。因此,假设Z,N2和M线中的“信号复合物”通过转导外部刺激/压力信号在各种不同的细胞事件(例如蛋白质修饰和基因)上触发适当的反应来调节肌肉细胞稳态。表达式。在本文中,我们对分离的单条肌纤维进行了p94的详细免疫组织化学分析。连同最近有关p94的发现一起,表明p94的肌节定位,特别是其M线定位受细胞环境(如肌原纤维的收缩状态,纤维类型组成,肌节成熟以及其组成)的组合影响。每个区域中的“信号复合体”。

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