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自卑情结:感觉离子通道为何会多聚化?

Inferiority complex: why do sensory ion channels multimerize?

作者信息

Gamper Nikita, Shah Shihab

机构信息

School of Biomedical Sciences, Faculty of Biological Sciences, University of Leeds, Leeds, U.K.

出版信息

Biochem Soc Trans. 2022 Feb 28;50(1):213-222. doi: 10.1042/BST20211002.

Abstract

Peripheral somatosensory nerves are equipped with versatile molecular sensors which respond to acute changes in the physical environment. Most of these sensors are ion channels that, when activated, depolarize the sensory nerve terminal causing it to generate action potentials, which is the first step in generation of most somatic sensations, including pain. The activation and inactivation of sensory ion channels is tightly regulated and modulated by a variety of mechanisms. Amongst such mechanisms is the regulation of sensory ion channel activity via direct molecular interactions with other proteins in multi-protein complexes at the plasma membrane of sensory nerve terminals. In this brief review, we will consider several examples of such complexes formed around a prototypic sensory receptor, transient receptor potential vanilloid type 1 (TRPV1). We will also discuss some inherent conceptual difficulties arising from the multitude of reported complexes.

摘要

外周躯体感觉神经配备了多种分子传感器,可对物理环境的急性变化做出反应。这些传感器大多数是离子通道,激活后会使感觉神经末梢去极化,从而产生动作电位,这是产生包括疼痛在内的大多数躯体感觉的第一步。感觉离子通道的激活和失活受到多种机制的严格调控。其中一种机制是通过与感觉神经末梢质膜上多蛋白复合物中的其他蛋白质直接分子相互作用来调节感觉离子通道的活性。在这篇简短的综述中,我们将考虑围绕原型感觉受体——瞬时受体电位香草酸受体1型(TRPV1)形成的此类复合物的几个例子。我们还将讨论因大量报道的复合物而产生的一些内在概念难题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a08/9022975/c812ef68b207/BST-50-213-g0001.jpg

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