TRP ion channels: Proteins with conformational flexibility.

Ana Elena López-Romero, Ileana Hernández-Araiza, Francisco Torres-Quiroz, Luis B Tovar-Y-Romo, León D Islas, Tamara Rosenbaum
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引用次数: 13

Abstract

Ion channels display conformational changes in response to binding of their agonists and antagonists. The study of the relationships between the structure and the function of these proteins has witnessed considerable advances in the last two decades using a combination of techniques, which include electrophysiology, optical approaches (i.e. patch clamp fluorometry, incorporation of non-canonic amino acids, etc.), molecular biology (mutations in different regions of ion channels to determine their role in function) and those that have permitted the resolution of their structures in detail (X-ray crystallography and cryo-electron microscopy). The possibility of making correlations among structural components and functional traits in ion channels has allowed for more refined conclusions on how these proteins work at the molecular level. With the cloning and description of the family of Transient Receptor Potential (TRP) channels, our understanding of several sensory-related processes has also greatly moved forward. The response of these proteins to several agonists, their regulation by signaling pathways as well as by protein-protein and lipid-protein interactions and, in some cases, their biophysical characteristics have been studied thoroughly and, recently, with the resolution of their structures, the field has experienced a new boom. This review article focuses on the conformational changes in the pores, concentrating on some members of the TRP family of ion channels (TRPV and TRPA subfamilies) that result in changes in their single-channel conductances, a phenomenon that may lead to fine-tuning the electrical response to a given agonist in a cell.

Abstract Image

Abstract Image

Abstract Image

TRP离子通道:具有构象柔韧性的蛋白质。
离子通道在其激动剂和拮抗剂结合时显示构象变化。在过去的二十年中,对这些蛋白质的结构和功能之间关系的研究已经取得了相当大的进展,其中包括电生理学、光学方法(即膜片钳荧光法、非canon氨基酸的掺入等)。分子生物学(离子通道不同区域的突变,以确定它们在功能中的作用)和那些允许详细分析其结构的研究(x射线晶体学和低温电子显微镜)。在离子通道中的结构成分和功能特征之间建立相关性的可能性,使得对这些蛋白质在分子水平上如何工作的更精确的结论成为可能。随着瞬时受体电位(TRP)通道家族的克隆和描述,我们对一些感觉相关过程的理解也有了很大的进展。这些蛋白质对几种激动剂的反应,它们通过信号通路以及蛋白质-蛋白质和脂质-蛋白质相互作用的调节,以及在某些情况下,它们的生物物理特性已经得到了彻底的研究,最近,随着它们结构的解决,该领域经历了新的繁荣。这篇综述文章的重点是孔隙中的构象变化,集中在TRP离子通道家族的一些成员(TRPV和TRPA亚家族),它们导致它们的单通道电导的变化,这种现象可能导致细胞中对给定激动剂的电响应的微调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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