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细胞质γ-肌动蛋白对于骨骼肌发育并非必需,但缺乏它会导致进行性肌病。

Cytoplasmic gamma-actin is not required for skeletal muscle development but its absence leads to a progressive myopathy.

作者信息

Sonnemann Kevin J, Fitzsimons Daniel P, Patel Jitandrakumar R, Liu Yewei, Schneider Martin F, Moss Richard L, Ervasti James M

机构信息

Program in Cellular and Molecular Biology, University of Wisconsin-Madison, 53706, USA.

出版信息

Dev Cell. 2006 Sep;11(3):387-97. doi: 10.1016/j.devcel.2006.07.001.

Abstract

Nonmuscle gamma(cyto)-actin is expressed at very low levels in skeletal muscle but uniquely localizes to costameres, the cytoskeletal networks that couple peripheral myofibrils to the sarcolemma. We generated and analyzed skeletal muscle-specific gamma(cyto)-actin knockout (Actg1-msKO) mice. Although muscle development proceeded normally, Actg1-msKO mice presented with overt muscle weakness accompanied by a progressive pattern of muscle fiber necrosis/regeneration. Functional deficits in whole-body tension and isometric twitch force were observed, consistent with defects in the connectivity between muscle fibers and/or myofibrils or at the myotendinous junctions. Surprisingly, gamma(cyto)-actin-deficient muscle did not demonstrate the fibrosis, inflammation, and membrane damage typical of several muscular dystrophies but rather presented with a novel progressive myopathy. Together, our data demonstrate an important role for minimally abundant but strategically localized gamma(cyto)-actin in adult skeletal muscle and describe a new mouse model to study the in vivo relevance of subcellular actin isoform sorting.

摘要

非肌肉γ(细胞)-肌动蛋白在骨骼肌中表达水平极低,但独特地定位于肌小节,即把外周肌原纤维与肌膜连接起来的细胞骨架网络。我们构建并分析了骨骼肌特异性γ(细胞)-肌动蛋白基因敲除(Actg1-msKO)小鼠。尽管肌肉发育正常进行,但Actg1-msKO小鼠表现出明显的肌肉无力,并伴有肌肉纤维坏死/再生的进行性模式。观察到全身张力和等长收缩力存在功能缺陷,这与肌肉纤维和/或肌原纤维之间或肌腱连接处的连接缺陷一致。令人惊讶的是,γ(细胞)-肌动蛋白缺陷的肌肉并未表现出几种肌肉营养不良典型的纤维化、炎症和膜损伤,而是呈现出一种新型的进行性肌病。总之,我们的数据证明了在成年骨骼肌中含量极少但定位关键的γ(细胞)-肌动蛋白的重要作用,并描述了一种新的小鼠模型,用于研究亚细胞肌动蛋白异构体分选在体内的相关性。

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