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细胞结构与功能中的收缩蛋白。

Contractile proteins in cell structure and function.

作者信息

Stossel T P

出版信息

Annu Rev Med. 1978;29:427-57. doi: 10.1146/annurev.me.29.020178.002235.

Abstract
  1. The cytoplasm of cells is a colloidal network of contractile proteins. Actin filaments are the major components of this network. Other contractile proteins interact with these filaments to create structural rigidity and movement. 2. The structure and function of contractile proteins is striated muscles is well characterized and thus provides a good example for extrapolitation to an analysis of contractile-protein structure and function of nonmuscle cells. However, the interaction of contractile proteins of various cells may be unique. 3. The study of contractile proteins in cells other than muscle has distinct difficulties: (a) The proteins are present in much lower concentration than in muscle, and only a few cell types are obtainable for study in quantities comparable to muscle. (b) Proteolysis and other detriments may be more severe in nonmuscle cells. (c) The organization of contractile proteins is difficult to define in nonmuscle cells. (d) The effort is diffuse; investigations examine a wide variety of different, or less commonly the same, cells. Reflecting these difficulties, a catalogue of putative nonmuscle cell fucntions related to contractile proteins reveals no one system to be definitively worked out. Nevertheless, the ubiquity of contractile proteins and the obvious importance of their intractions presages increasing relevancy for physiology and medicine.
摘要
  1. 细胞的细胞质是由收缩蛋白构成的胶体网络。肌动蛋白丝是该网络的主要成分。其他收缩蛋白与这些丝相互作用,以产生结构刚性和运动。2. 横纹肌中收缩蛋白的结构和功能已得到充分表征,因此为推断非肌肉细胞收缩蛋白的结构和功能提供了一个很好的例子。然而,各种细胞中收缩蛋白的相互作用可能是独特的。3. 对肌肉以外细胞中的收缩蛋白进行研究存在明显困难:(a) 这些蛋白质的浓度比肌肉中的低得多,而且只有少数几种细胞类型可供研究,其数量可与肌肉相比。(b) 蛋白水解和其他损害在非肌肉细胞中可能更严重。(c) 非肌肉细胞中收缩蛋白的组织难以确定。(d) 研究工作分散;研究涉及各种各样不同的细胞,或者较少涉及相同的细胞。反映出这些困难的是,一份与收缩蛋白相关的假定非肌肉细胞功能目录显示,没有一个系统已被明确阐明。然而,收缩蛋白的普遍存在及其相互作用的明显重要性预示着其对生理学和医学的相关性将不断增加。

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