Ottenheijm Coen A C, Granzier Henk
Laboratory for Physiology, Institute for Cardiovascular Research, VU University Medical Center, 1081BT Amsterdam, The Netherlands.
J Biomed Biotechnol. 2010;2010:968139. doi: 10.1155/2010/968139. Epub 2010 Jun 1.
One important feature of muscle structure and function that has remained relatively obscure is the mechanism that regulates thin filament length. Filament length is an important aspect of muscle function as force production is proportional to the amount of overlap between thick and thin filaments. Recent advances, due in part to the generation of nebulin KO models, reveal that nebulin plays an important role in the regulation of thin filament length. Another structural feature of skeletal muscle that is not well understood is the mechanism involved in maintaining the regular lateral alignment of adjacent sarcomeres, that is, myofibrillar connectivity. Recent studies indicate that nebulin is part of a protein complex that mechanically links adjacent myofibrils. Thus, novel structural roles of nebulin in skeletal muscle involve the regulation of thin filament length and maintaining myofibrillar connectivity. When these functions of nebulin are absent, muscle weakness ensues, as is the case in patients with nemaline myopathy with mutations in nebulin. Here we review these new insights in the role of nebulin in skeletal muscle structure.
肌肉结构与功能中一个相对模糊的重要特征是调节细肌丝长度的机制。肌丝长度是肌肉功能的一个重要方面,因为力的产生与粗、细肌丝之间的重叠量成正比。部分由于生成了伴肌动蛋白敲除模型,最近的研究进展揭示伴肌动蛋白在调节细肌丝长度方面发挥着重要作用。骨骼肌的另一个尚未被充分理解的结构特征是维持相邻肌节规则横向排列的机制,即肌原纤维连接性。最近的研究表明,伴肌动蛋白是一个将相邻肌原纤维机械连接起来的蛋白质复合体的一部分。因此,伴肌动蛋白在骨骼肌中的新结构作用涉及调节细肌丝长度和维持肌原纤维连接性。当伴肌动蛋白的这些功能缺失时,就会出现肌肉无力,如在伴肌动蛋白发生突变的杆状体肌病患者中那样。在此,我们综述伴肌动蛋白在骨骼肌结构中作用的这些新见解。