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Cys-loop 受体的门控机制。

Gating mechanisms in Cys-loop receptors.

机构信息

School of Medical Sciences, The University of New South Wales, Sydney, NSW, 2052, Australia.

出版信息

Eur Biophys J. 2009 Dec;39(1):37-49. doi: 10.1007/s00249-009-0452-y. Epub 2009 Apr 29.

Abstract

The Cys-loop receptor superfamily of ligand-gated ion channels has a prominent role in neuronal signalling. These receptors are pentamers, each subunit containing ten beta-strands in the extracellular domain and four alpha-helical transmembrane domains (M1-M4). The M2 domain of each subunit lines the intrinsic ion channel pore and residues within the extracellular domain form ligand binding sites. Ligand binding initiates a conformational change that opens the ion-selective pore. The coupling between ligand binding in the extracellular domain and opening of the intrinsic ion channel pore located in the membrane is not fully understood. Several loop structures, such as loop 2, the Cys-loop, the pre-M1 region and the M2-M3 loop have been implicated in receptor activation. The current "conformational change wave" hypothesis suggests that binding of a ligand initiates a rotation of the beta-sheets around an axis that passes through the Cys-loop. Due to this rotation, the Cys-loop and loop 2 are displaced. Movement of the M2-M3 loop then twists the M2 domain leading to a separation of the helices and opening of the pore. The publication of a crystal structure of an acetylcholine binding protein and the refined structure of the Torpedo marmorata acetylcholine receptor have improved the understanding of the mechanisms and structures involved in coupling ligand binding to channel gating. In this review, the most recent findings on some of these loop structures will be reported and discussed in view of their role in the gating mechanism.

摘要

Cys 环受体超家族的配体门控离子通道在神经元信号转导中具有重要作用。这些受体是五聚体,每个亚基的细胞外域包含十个β-折叠,四个α-螺旋跨膜域(M1-M4)。每个亚基的 M2 域构成内在的离子通道孔道,细胞外域的残基形成配体结合位点。配体结合引发构象变化,从而打开离子选择性孔道。细胞外域的配体结合与位于膜中的内在离子通道孔道的打开之间的偶联尚未完全理解。Loop 2、Cys 环、pre-M1 区和 M2-M3 环等几种环结构已被认为与受体激活有关。目前的“构象变化波”假说表明,配体的结合引发围绕穿过 Cys 环的轴的β-折叠的旋转。由于这种旋转,Cys 环和 Loop 2 发生位移。M2-M3 环的移动导致 M2 域扭曲,从而导致螺旋分离和孔道打开。乙酰胆碱结合蛋白的晶体结构和美洲电鳗乙酰胆碱受体的精细结构的发表提高了对将配体结合与通道门控偶联相关的机制和结构的理解。在这篇综述中,将报告和讨论这些环结构中的一些最新发现,以了解它们在门控机制中的作用。

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