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从结构-功能关系角度看钙蛋白酶与病理学

[Calpain and pathology in view of structure-function relationships].

作者信息

Sorimachi Hiroyuki, Kawabata Yukiko

机构信息

Laboratory of Biological Function, Dept. of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Japan.

出版信息

Nihon Yakurigaku Zasshi. 2003 Jul;122(1):21-9. doi: 10.1254/fpj.122.21.

Abstract

Calpain, a Ca(2+)-requiring cytoplasmic cysteine protease, plays indispensable roles in various cellular functions such as signal transduction, cell growth and differentiation, apoptosis, necrosis, and so on. Although most of the detailed physiological functions of calpains have not yet been elucidated, the importance of calpain is obvious from the increasing numbers of papers describing relationships between human disease states (such as Alzheimer's disease, cataract, and muscular dystrophies) and malfunction of calpain. One of the recent remarkable topics of calpain is that a single nucleotide polymorphism of CAPN10, the gene for calpain 10, is related to type 2 diabetes. However, physiological functions of calpain 10 and its relation to diabetes are still unclear. Among 14 human calpain genes, mutations in CAPN3, the gene for p94/calpain 3a and Lp82/calpain 3b, are the only example that genetically connects the calpain gene and human disease, in this case, limb-girdle muscular dystrophy type 2A (LGMD2A). p94 has unique characteristics such as apparent Ca(2+)-independent activation and very rapid autolytic activity, which are dependent on p94-specific regions, NS, IS1, and IS2. Based on the 3D structures of micro - and m-calpain, molecular functions of p94 in relation to LGMD2A are discussed, with the hope of providing us with some clues to understand calpain functions and its relationships to human diseases.

摘要

钙蛋白酶是一种需要钙离子的胞质半胱氨酸蛋白酶,在各种细胞功能中发挥着不可或缺的作用,如信号转导、细胞生长与分化、凋亡、坏死等。尽管钙蛋白酶的大多数详细生理功能尚未阐明,但从越来越多描述人类疾病状态(如阿尔茨海默病、白内障和肌肉萎缩症)与钙蛋白酶功能异常之间关系的论文中可以明显看出钙蛋白酶的重要性。钙蛋白酶最近的一个显著话题是钙蛋白酶10基因(CAPN10)的单核苷酸多态性与2型糖尿病有关。然而,钙蛋白酶10的生理功能及其与糖尿病的关系仍不清楚。在14个人类钙蛋白酶基因中,p94/钙蛋白酶3a和Lp82/钙蛋白酶3b的基因CAPN3中的突变是唯一将钙蛋白酶基因与人类疾病在基因上联系起来的例子,在这种情况下是2A型肢带型肌营养不良(LGMD2A)。p94具有独特的特性,如明显的不依赖钙离子的激活和非常快速的自溶活性,这些特性依赖于p94特异性区域NS、IS1和IS2。基于微钙蛋白酶和中钙蛋白酶的三维结构,讨论了p94与LGMD2A相关的分子功能,希望能为我们理解钙蛋白酶的功能及其与人类疾病的关系提供一些线索。

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