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横纹肌中的细胞骨架基质:肌联蛋白、伴肌动蛋白和中间丝的作用。

Cytoskeletal matrix in striated muscle: the role of titin, nebulin and intermediate filaments.

作者信息

Wang K

出版信息

Adv Exp Med Biol. 1984;170:285-305. doi: 10.1007/978-1-4684-4703-3_25.

Abstract

In this chapter, first I will briefly describe the molecular properties of titin and nebulin --two extremely large, myofibrillar proteins--and discuss their distribution and organization in the sarcomere. Although these novel proteins are major myofibrillar components of a wide range of striated muscles, they have escaped the attention of muscle biochemists until very recently. As I shall point out below, biochemical studies of these proteins have been unexpectedly challenging; many standard techniques had to be modified before they became capable of handling such giant proteins. In addition, our structural studies of these proteins have encountered a challange of a different nature: how to explain their distribution in the sarcomere according to the currently accepted two filament sarcomere model, because these proteins do not appear to be thick or thin filament-associated regulatory or anchoring proteins. These studies have led us to reexamine the question of whether continuous, longitudinal filaments exist within the sarcomere of striated muscle. I will attempt to integrate our results, as well as available literature data, within the framework of a hypothetical sarcomere model which incorporates an elastic filamentous matrix consisting of titin and nebulin as additional sarcomere constituents. Finally, I will very briefly mention our recent findings that an extensive three dimensional network of intermediate (10 nm) filaments, distinct from titin and nebulin , is intimately associated with the sarcomere of adult striated muscle. I believe that the recognition of the existence of two sets of sarcomere-associated cytoskeletal filaments within adult striated muscle fibers may be a significant step toward resolving some of the unsettled questions in muscle mechanics such as those that have been discussed in this meeting.

摘要

在本章中,首先我将简要描述肌联蛋白和伴肌动蛋白这两种极其巨大的肌原纤维蛋白的分子特性,并讨论它们在肌节中的分布和组织情况。尽管这些新蛋白是多种横纹肌的主要肌原纤维成分,但直到最近它们才引起肌肉生物化学家的关注。正如我将在下文指出的,对这些蛋白的生化研究意外地具有挑战性;许多标准技术在能够处理如此巨大的蛋白之前都必须进行修改。此外,我们对这些蛋白的结构研究遇到了另一种性质的挑战:如何根据目前被广泛接受的双丝肌节模型来解释它们在肌节中的分布,因为这些蛋白似乎既不是与粗肌丝或细肌丝相关的调节蛋白,也不是锚定蛋白。这些研究促使我们重新审视横纹肌肌节中是否存在连续的纵向细丝这一问题。我将尝试把我们的研究结果以及现有的文献数据整合到一个假设的肌节模型框架内,该模型纳入了由肌联蛋白和伴肌动蛋白组成的弹性丝状基质作为额外的肌节成分。最后,我将非常简要地提及我们最近的发现,即与肌联蛋白和伴肌动蛋白不同的广泛的三维中间(10纳米)细丝网络与成年横纹肌的肌节密切相关。我认为,认识到成年横纹肌纤维中存在两组与肌节相关的细胞骨架细丝,可能是朝着解决肌肉力学中一些尚未解决的问题迈出的重要一步,比如本次会议中讨论的那些问题。

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