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Functional roles of the gamma subunit of the skeletal muscle DHP-receptor

机译:骨骼肌DHP受体γ亚基的功能作用

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In excitation–contraction coupling (EC coupling) of skeletal muscle, large and rapid changes of the myoplasmic Ca2+ concentration mediate the activation and termination of force. The L-type Ca2+ channel (dihydropyridine receptor, DHP receptor) is a central component of the EC coupling process. Its predominant role is to provide the Ca2+ release channels of the sarcoplasmic reticulum (SR) with the sensitivity to cell membrane voltage. The DHP receptor consists of five different proteins (α1S, β1, γ1, δ and α2) whose tasks and functional characteristics are still incompletely understood. This short review summarizes progress made in studying the physiology of the γ1 subunit, a membrane polypeptide that is highly specific for skeletal muscle. The focus is on recent results obtained from muscle of γ1-deficient mice.
机译:在骨骼肌的兴奋-收缩耦合(EC耦合)中,肌质Ca2 + 浓度的大而快速的变化介导了力的激活和终止。 L型Ca2 + 通道(二氢吡啶受体,DHP受体)是EC耦合过程的重要组成部分。它的主要作用是为肌浆网(SR)提供Ca2 +释放通道,使其对细胞膜电压敏感。 DHP受体由五个不同的蛋白质(α1S,β1,γ1,δ和α2)组成,这些蛋白质的任务和功能特征尚不完全清楚。这篇简短的综述总结了在研究γ1亚基(一种对骨骼肌高度特异的膜多肽)的生理学方面取得的进展。重点是从缺乏γ1的小鼠的肌肉获得的最新结果。

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