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肌节细胞骨架:谁来承受压力?

The sarcomeric cytoskeleton: who picks up the strain?

机构信息

King's College London BHF Centre of Research Excellence, Cardiovascular Division and Randall Division for Cell and Molecular Biophysics, London SE1 1UL, United Kingdom.

出版信息

Curr Opin Cell Biol. 2011 Feb;23(1):39-46. doi: 10.1016/j.ceb.2010.12.001. Epub 2010 Dec 27.

Abstract

In striated muscle sarcomeres, the contractile actin and myosin filaments are organised by a subset of specialised cytoskeletal proteins, the sarcomeric cytoskeleton. They include α-actinin, myomesin, and the giant proteins titin, obscurin and nebulin, which combine architectural, mechanical and signalling functions. Mechanics and signalling in the sarcomere appear tightly interdependent, but the exact contributions of the various sarcomeric cytoskeleton proteins to strain handling or signalling are only just emerging. General mechanisms of cytoskeletal mechanics and signalling may be gleaned from the sarcomere as a specialised actomyosin system. Recent work has led to insight into the interactions, structure, and mechanical stability of sarcomeric protein complexes that fulfil both structural and signalling roles.

摘要

在横纹肌肌节中,收缩的肌动蛋白和肌球蛋白丝由一组专门的细胞骨架蛋白组成,即肌节细胞骨架。这些蛋白包括α-辅肌动蛋白、肌联蛋白和巨大蛋白肌联蛋白、 obscurin 和 nebulin,它们具有结构、机械和信号功能。肌节中的力学和信号似乎紧密相关,但各种肌节细胞骨架蛋白对应变处理或信号传递的确切贡献才刚刚出现。细胞骨架力学和信号传递的一般机制可以从肌节这个特殊的肌球蛋白系统中获得。最近的工作使人们深入了解了满足结构和信号功能的肌节蛋白复合物的相互作用、结构和机械稳定性。

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