钙电流如何以及为什么在骨骼肌电压门控钙通道中减少?

B. Flucher, Petronel Tuluc
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引用次数: 28

摘要

电压门控钙通道是将可兴奋细胞的电信号转化为细胞功能(如收缩、分泌和基因调控)的唯一机制。特定的电压感应域检测膜电位的变化并控制通道门控。通过通道进入的钙离子作为第二信使调节细胞功能,但骨骼肌除外,在骨骼肌中,CaV1.1基本上不作为通道,而是激活细胞内储存的钙释放。人们早就知道钙电流对于骨骼肌收缩是必不可少的。然而,CaV1.1的通道功能是如何以及为什么被削弱的问题仍然不清楚,直到最近发现了具有正常通道功能的CaV1.1剪接变体。这一发现为研究调节通道门控的分子机制提供了新的手段,并使人们认识到,在骨骼肌中,钙电流需要受到限制,以允许纤维类型规范的适当调节,并防止线粒体损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How and why are calcium currents curtailed in the skeletal muscle voltage‐gated calcium channels?
Voltage‐gated calcium channels represent the sole mechanism converting electrical signals of excitable cells into cellular functions such as contraction, secretion and gene regulation. Specific voltage‐sensing domains detect changes in membrane potential and control channel gating. Calcium ions entering through the channel function as second messengers regulating cell functions, with the exception of skeletal muscle, where CaV1.1 essentially does not function as a channel but activates calcium release from intracellular stores. It has long been known that calcium currents are dispensable for skeletal muscle contraction. However, the questions as to how and why the channel function of CaV1.1 is curtailed remained obscure until the recent discovery of a developmental CaV1.1 splice variant with normal channel functions. This discovery provided new means to study the molecular mechanisms regulating the channel gating and led to the understanding that in skeletal muscle, calcium currents need to be restricted to allow proper regulation of fibre type specification and to prevent mitochondrial damage.
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