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Pannexin1 通道门控和调节的机制。

Mechanisms of pannexin1 channel gating and regulation.

机构信息

Biology, York University, Toronto, Canada.

Biology, York University, Toronto, Canada; Psychology, York University, Toronto, Canada.

出版信息

Biochim Biophys Acta Biomembr. 2018 Jan;1860(1):65-71. doi: 10.1016/j.bbamem.2017.07.009. Epub 2017 Jul 21.

Abstract

Pannexins are a family of integral membrane proteins with distinct post-translational modifications, sub-cellular localization and tissue distribution. Panx1 is the most studied and best-characterized isoform of this gene family. The ubiquitous expression, as well as its function as a major ATP release and nucleotide permeation channel, makes Panx1 a primary candidate for participating in the pathophysiology of CNS disorders. While many investigations revolve around Panx1 functions in health and disease, more recently, details started emerging about mechanisms that control Panx1 channel activity. These advancements in Panx1 biology have revealed that beyond its classical role as an unopposed plasma membrane channel, it participates in alternative pathways involving multiple intracellular compartments, protein complexes and a myriad of extracellular participants. Here, we review recent progress in our understanding of Panx1 at the center of these pathways, highlighting its modulation in a context specific manner. This article is part of a Special Issue entitled: Gap Junction Proteins edited by Jean Claude Herve.

摘要

质膜蛋白家族 Pannexin 具有独特的翻译后修饰、亚细胞定位和组织分布。Pannexin1 是该基因家族中研究最多、特征最明确的同工型。Pannexin1 的广泛表达及其作为主要 ATP 释放和核苷酸通透通道的功能,使其成为参与中枢神经系统疾病病理生理学的主要候选者。虽然许多研究都围绕 Pannexin1 在健康和疾病中的功能展开,但最近,关于控制 Pannexin1 通道活性的机制的细节开始出现。这些 Pannexin1 生物学方面的进展表明,除了其作为经典的无拮抗质膜通道的作用外,它还参与涉及多个细胞内隔室、蛋白质复合物和无数细胞外参与者的替代途径。在这里,我们回顾了在这些途径的中心理解 Pannexin1 的最新进展,强调了其在特定背景下的调节作用。本文是由 Jean Claude Herve 编辑的特刊“间隙连接蛋白”的一部分。

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