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缺乏结蛋白的小鼠的肌肉结构破坏和心肌变性。

Disruption of muscle architecture and myocardial degeneration in mice lacking desmin.

作者信息

Milner D J, Weitzer G, Tran D, Bradley A, Capetanaki Y

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Cell Biol. 1996 Sep;134(5):1255-70. doi: 10.1083/jcb.134.5.1255.

Abstract

Desmin, the muscle specific intermediate filament (IF) protein encoded by a single gene, is expressed in all muscle tissues. In mature striated muscle, desmin IFs surround the Z-discs, interlink them together and integrate the contractile apparatus with the sarcolemma and the nucleus. To investigate the function of desmin in all three muscle types in vivo, we generated desmin null mice through homologous recombination. Surprisingly, desmin null mice are viable and fertile. However, these mice demonstrated a multisystem disorder involving cardiac, skeletal, and smooth muscle. Histological and electron microscopic analysis in both heart and skeletal muscle tissues revealed severe disruption of muscle architecture and degeneration. Structural abnormalities included loss of lateral alignment of myofibrils and abnormal mitochondrial organization. The consequences of these abnormalities were most severe in the heart, which exhibited progressive degeneration and necrosis of the myocardium accompanied by extensive calcification. Abnormalities of smooth muscle included hypoplasia and degeneration. The present data demonstrate the essential role of desmin in the maintenance of myofibril, myofiber, and whole muscle tissue structural and functional integrity, and show that the absence of desmin leads to muscle degeneration.

摘要

结蛋白是由单一基因编码的肌肉特异性中间丝(IF)蛋白,在所有肌肉组织中均有表达。在成熟的横纹肌中,结蛋白中间丝围绕Z线,将它们相互连接,并将收缩装置与肌膜和细胞核整合在一起。为了研究结蛋白在体内所有三种肌肉类型中的功能,我们通过同源重组产生了结蛋白基因敲除小鼠。令人惊讶的是,结蛋白基因敲除小鼠能够存活且可育。然而,这些小鼠表现出涉及心脏、骨骼和平滑肌的多系统紊乱。对心脏和骨骼肌组织进行的组织学和电子显微镜分析显示,肌肉结构严重破坏且发生退化。结构异常包括肌原纤维横向排列丧失和线粒体组织异常。这些异常在心脏中的后果最为严重,心脏表现出心肌进行性退化和坏死,并伴有广泛钙化。平滑肌异常包括发育不全和退化。目前的数据证明了结蛋白在维持肌原纤维、肌纤维和整个肌肉组织结构与功能完整性方面的重要作用,并表明结蛋白缺失会导致肌肉退化。

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