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辅助亚基对电压门控钙通道功能多样性的作用。

The role of auxiliary subunits for the functional diversity of voltage-gated calcium channels.

作者信息

Campiglio Marta, Flucher Bernhard E

机构信息

Division of Physiology, Department of Physiology and Medical Physics, Medical University Innsbruck, Innsbruck, Austria.

出版信息

J Cell Physiol. 2015 Sep;230(9):2019-31. doi: 10.1002/jcp.24998.

Abstract

Voltage-gated calcium channels (VGCCs) represent the sole mechanism to convert membrane depolarization into cellular functions like secretion, contraction, or gene regulation. VGCCs consist of a pore-forming α(1) subunit and several auxiliary channel subunits. These subunits come in multiple isoforms and splice-variants giving rise to a stunning molecular diversity of possible subunit combinations. It is generally believed that specific auxiliary subunits differentially regulate the channels and thereby contribute to the great functional diversity of VGCCs. If auxiliary subunits can associate and dissociate from pre-existing channel complexes, this would allow dynamic regulation of channel properties. However, most auxiliary subunits modulate current properties very similarly, and proof that any cellular calcium channel function is indeed modulated by the physiological exchange of auxiliary subunits is still lacking. In this review we summarize available information supporting a differential modulation of calcium channel functions by exchange of auxiliary subunits, as well as experimental evidence in support of alternative functions of the auxiliary subunits. At the heart of the discussion is the concept that, in their native environment, VGCCs function in the context of macromolecular signaling complexes and that the auxiliary subunits help to orchestrate the diverse protein-protein interactions found in these calcium channel signalosomes. Thus, in addition to a putative differential modulation of current properties, differential subcellular targeting properties and differential protein-protein interactions of the auxiliary subunits may explain the need for their vast molecular diversity.

摘要

电压门控钙通道(VGCCs)是将膜去极化转化为诸如分泌、收缩或基因调控等细胞功能的唯一机制。VGCCs由一个形成孔道的α(1)亚基和几个辅助通道亚基组成。这些亚基有多种亚型和剪接变体,产生了令人惊叹的可能亚基组合的分子多样性。一般认为,特定的辅助亚基对通道进行不同的调节,从而导致VGCCs具有巨大的功能多样性。如果辅助亚基能够与预先存在的通道复合物结合和解离,这将允许对通道特性进行动态调节。然而,大多数辅助亚基对电流特性的调节非常相似,并且仍然缺乏任何细胞钙通道功能确实通过辅助亚基的生理交换进行调节的证据。在这篇综述中,我们总结了支持通过辅助亚基交换对钙通道功能进行差异调节的现有信息,以及支持辅助亚基其他功能的实验证据。讨论的核心概念是,在其天然环境中,VGCCs在大分子信号复合物的背景下起作用,并且辅助亚基有助于协调在这些钙通道信号小体中发现的各种蛋白质-蛋白质相互作用。因此,除了可能对电流特性进行差异调节外,辅助亚基的差异亚细胞靶向特性和差异蛋白质-蛋白质相互作用可能解释了它们巨大分子多样性的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8360/4672716/76a03ab7bb57/jcp0230-2019-f1.jpg

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