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从容积调节阴离子电流到 LRRC8 通道分子结构的 30 年历程。

A 30-year journey from volume-regulated anion currents to molecular structure of the LRRC8 channel.

机构信息

Department of Anesthesiology, Vanderbilt University Medical Center, Nashville, TN.

Novo Biosciences, Inc., Bar Harbor, ME.

出版信息

J Gen Physiol. 2019 Feb 4;151(2):100-117. doi: 10.1085/jgp.201812138. Epub 2019 Jan 16.

Abstract

The swelling-activated anion channel VRAC has fascinated and frustrated physiologists since it was first described in 1988. Multiple laboratories have defined VRAC's biophysical properties and have shown that it plays a central role in cell volume regulation and possibly other fundamental physiological processes. However, confusion and intense controversy surrounding the channel's molecular identity greatly hindered progress in the field for >15 yr. A major breakthrough came in 2014 with the demonstration that VRAC is a heteromeric channel encoded by five members of the gene family, A mere 4 yr later, four laboratories described cryo-EM structures of LRRC8A homomeric channels. As the melee of structure/function and physiology studies begins, it is critical that this work be framed by a clear understanding of VRAC biophysics, regulation, and cellular physiology as well as by the field's past confusion and controversies. That understanding is essential for the design and interpretation of structure/function studies, studies of VRAC physiology, and studies aimed at addressing the vexing problem of how the channel detects cell volume changes. In this review we discuss key aspects of VRAC biophysics, regulation, and function and integrate these into our emerging understanding of LRRC8 protein structure/function.

摘要

肿胀激活的阴离子通道 VRAC 自 1988 年首次描述以来,一直令生理学家既着迷又沮丧。多个实验室已经定义了 VRAC 的生物物理特性,并表明它在细胞体积调节和可能其他基本生理过程中发挥着核心作用。然而,围绕通道分子身份的困惑和激烈争议在该领域阻碍了 15 年以上的进展。2014 年的一项重大突破是证明 VRAC 是由基因家族的五个成员编码的异源通道,仅仅 4 年后,四个实验室就描述了 LRRC8A 同源通道的冷冻电镜结构。随着结构/功能和生理学研究的混战开始,重要的是要通过清楚地了解 VRAC 的生物物理学、调节和细胞生理学以及该领域过去的困惑和争议来框定这项工作。这种理解对于设计和解释结构/功能研究、VRAC 生理学研究以及解决通道如何检测细胞体积变化这一棘手问题的研究都是至关重要的。在这篇综述中,我们讨论了 VRAC 生物物理学、调节和功能的关键方面,并将这些方面纳入我们对 LRRC8 蛋白结构/功能的新兴理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f486/6363415/90730bea1ee5/JGP_201812138_Fig1.jpg

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