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细胞骨架/拉伸激活离子通道相互作用调节骨骼肌成肌细胞的肌源性分化。

Cytoskeleton/stretch-activated ion channel interaction regulates myogenic differentiation of skeletal myoblasts.

作者信息

Formigli Lucia, Meacci Elisabetta, Sassoli Chiara, Squecco Roberta, Nosi Daniele, Chellini Flaminia, Naro Fabio, Francini Fabio, Zecchi-Orlandini Sandra

机构信息

Department of Anatomy, Histology and Forensic Medicine, University of Florence, Florence, Italy.

出版信息

J Cell Physiol. 2007 May;211(2):296-306. doi: 10.1002/jcp.20936.

Abstract

In the present study, we investigated the functional interaction between stress fibers (SFs) and stretch-activated channels (SACs) and its possible role in the regulation of myoblast differentiation induced by switch to differentiation culture in the presence or absence of sphingosine 1-phosphate. It was found that there was a clear temporal correlation between SF formation and SAC activation in differentiating C2C12 myoblasts. Inhibition of actin polymerization with the specific Rho kinase inhibitor Y-27632, significantly decreased SAC sensitivity in these cells, suggesting a role for Rho-dependent actin remodeling in the regulation of the channel opening. The alteration of cytoskeletal/SAC functional correlation had also deleterious effects on myogenic differentiation of C2C12 cells as judged by combined confocal immunofluorescence, biochemical and electrophysiological analyses. Indeed, the treatment with Y-27632 or with DHCB, an actin disrupting agent, inhibited the expression of the myogenic markers (myogenin and sarcomeric proteins) and myoblast-myotube transition. The treatment with the channel blocker, GdCl(3), also affected myogenesis in these cells. It impaired, in fact, myoblast phenotypic maturation (i.e., reduced the expression of alpha-sarcomeric actin and skeletal myosin and the activity of creatine kinase) but did not modify promoter activity and protein expression levels of myogenin. The results of this study, together with being in agreement with the general idea that cytoskeletal remodeling is essential for muscle differentiation, describe a novel pathway whereby the formation of SFs and their contraction, generate a mechanical tension to the plasma membrane, activate SACs and trigger Ca(2+)-dependent signals, thus influencing the phenotypic maturation of myoblasts.

摘要

在本研究中,我们探究了应力纤维(SFs)与牵张激活通道(SACs)之间的功能相互作用,以及在存在或不存在1-磷酸鞘氨醇的情况下,其在转分化培养诱导的成肌细胞分化调控中的可能作用。研究发现,在分化的C2C12成肌细胞中,SF形成与SAC激活之间存在明显的时间相关性。用特异性Rho激酶抑制剂Y-27632抑制肌动蛋白聚合,显著降低了这些细胞中SAC的敏感性,表明Rho依赖性肌动蛋白重塑在通道开放调控中发挥作用。通过共聚焦免疫荧光、生化和电生理分析综合判断,细胞骨架/SAC功能相关性的改变对C2C12细胞的肌源性分化也有有害影响。事实上,用Y-27632或肌动蛋白破坏剂DHCB处理,抑制了肌源性标志物(肌细胞生成素和肌节蛋白)的表达以及成肌细胞-肌管转变。用通道阻滞剂GdCl₃处理也影响了这些细胞的肌生成。实际上,它损害了成肌细胞的表型成熟(即降低了α-肌节肌动蛋白和骨骼肌肌球蛋白的表达以及肌酸激酶的活性),但未改变肌细胞生成素的启动子活性和蛋白表达水平。本研究结果与细胞骨架重塑对肌肉分化至关重要的总体观点一致,描述了一条新途径,即SFs的形成及其收缩对质膜产生机械张力,激活SACs并触发Ca²⁺依赖性信号,从而影响成肌细胞的表型成熟。

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