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对骨骼肌兴奋-收缩偶联至关重要的兰尼碱受体区域。

A region of the ryanodine receptor critical for excitation-contraction coupling in skeletal muscle.

作者信息

Yamazawa T, Takeshima H, Shimuta M, Iino M

机构信息

Department of Pharmacology, Faculty of Medicine, The University of Tokyo and CREST, Japan Science and Technology Corporation, Hongo 7-3-1, Bunkyo-ku, Tokyo 113, Japan.

出版信息

J Biol Chem. 1997 Mar 28;272(13):8161-4. doi: 10.1074/jbc.272.13.8161.

Abstract

Ca2+ release mediated by the ryanodine receptor (RyR) regulates many important cell functions including excitation-contraction (E-C) coupling in skeletal muscle, by which membrane depolarization controls the opening of RyR via the dihydropyridine receptor. Among the three RyR subtypes, RyR-1 mediates skeletal muscle E-C coupling, whereas RyR-2 and RyR-3 cannot substitute for RyR-1. We carried out expression experiments using cultured mutant skeletal myocytes not having intrinsic intracellular Ca2+ release channels to study the structure-function relationship of amino acid residues 1303-1406 in RyR-1 (D2 region). In this region the amino acid sequences are highly divergent between RyR-1 and RyR-2, and the corresponding sequence is lacking in RyR-3. Expression of RyR-1 but not of RyR-2 rescued E-C coupling in the mutant cells. Deletion of either the entire D2 region or its N-terminal half from RyR-1 preserved the function of RyR-1 as a Ca2+ release channel but resulted in the loss of E-C coupling. Substitution of the D2 region for the corresponding sequence of RyR-2 had no effect on the function of RyR-1. These results indicate that the presence of the D2 region is critical for E-C coupling in skeletal muscle, although the D2 region alone cannot determine the functional difference between RyR-1 and RyR-2.

摘要

由兰尼碱受体(RyR)介导的Ca2+释放调节许多重要的细胞功能,包括骨骼肌中的兴奋-收缩(E-C)偶联,通过这种偶联,膜去极化经由二氢吡啶受体控制RyR的开放。在三种RyR亚型中,RyR-1介导骨骼肌E-C偶联,而RyR-2和RyR-3不能替代RyR-1。我们使用没有内在细胞内Ca2+释放通道的培养突变骨骼肌细胞进行了表达实验,以研究RyR-1(D2区域)中氨基酸残基1303-1406的结构-功能关系。在该区域,RyR-1和RyR-2之间的氨基酸序列高度不同,并且RyR-3中缺乏相应序列。RyR-1而非RyR-2的表达挽救了突变细胞中的E-C偶联。从RyR-1中删除整个D2区域或其N端一半保留了RyR-1作为Ca2+释放通道的功能,但导致E-C偶联丧失。用RyR-2的相应序列替换D2区域对RyR-1的功能没有影响。这些结果表明,D2区域的存在对骨骼肌中的E-C偶联至关重要,尽管单独的D2区域不能决定RyR-1和RyR-2之间的功能差异。

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