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Cys-loop 受体功能的结构基础。

The structural basis of function in Cys-loop receptors.

机构信息

Department of Biochemistry, University of Cambridge, Building O, Downing Site, Cambridge CB2 1QW, UK.

出版信息

Q Rev Biophys. 2010 Nov;43(4):449-99. doi: 10.1017/S0033583510000168. Epub 2010 Sep 20.

Abstract

Cys-loop receptors are membrane-spanning neurotransmitter-gated ion channels that are responsible for fast excitatory and inhibitory transmission in the peripheral and central nervous systems. The best studied members of the Cys-loop family are nACh, 5-HT3, GABAA and glycine receptors. All these receptors share a common structure of five subunits, pseudo-symmetrically arranged to form a rosette with a central ion-conducting pore. Some are cation selective (e.g. nACh and 5-HT3) and some are anion selective (e.g. GABAA and glycine). Each receptor has an extracellular domain (ECD) that contains the ligand-binding sites, a transmembrane domain (TMD) that allows ions to pass across the membrane, and an intracellular domain (ICD) that plays a role in channel conductance and receptor modulation. Cys-loop receptors are the targets for many currently used clinically relevant drugs (e.g. benzodiazepines and anaesthetics). Understanding the molecular mechanisms of these receptors could therefore provide the catalyst for further development in this field, as well as promoting the development of experimental techniques for other areas of neuroscience.In this review, we present our current understanding of Cys-loop receptor structure and function. The ECD has been extensively studied. Research in this area has been stimulated in recent years by the publication of high-resolution structures of nACh receptors and related proteins, which have permitted the creation of many Cys loop receptor homology models of this region. Here, using the 5-HT3 receptor as a typical member of the family, we describe how homology modelling and ligand docking can provide useful but not definitive information about ligand interactions. We briefly consider some of the many Cys-loop receptors modulators. We discuss the current understanding of the structure of the TMD, and how this links to the ECD to allow channel gating, and consider the roles of the ICD, whose structure is poorly understood. We also describe some of the current methods that are beginning to reveal the differences between different receptor states, and may ultimately show structural details of transitions between them.

摘要

Cys 环受体是跨膜神经递质门控离子通道,负责外周和中枢神经系统中的快速兴奋和抑制性传递。Cys 环家族中研究最多的成员是 nACh、5-HT3、GABAA 和甘氨酸受体。所有这些受体都具有共同的五聚体结构,以伪对称方式排列,形成中央离子通道的玫瑰花结。有些是阳离子选择性的(例如 nACh 和 5-HT3),有些是阴离子选择性的(例如 GABAA 和甘氨酸)。每个受体都有一个细胞外结构域 (ECD),其中包含配体结合位点,一个跨膜结构域 (TMD),允许离子穿过膜,以及一个细胞内结构域 (ICD),在通道电导和受体调节中发挥作用。Cys 环受体是许多目前临床相关药物(例如苯二氮䓬类和麻醉剂)的靶标。因此,了解这些受体的分子机制可以为该领域的进一步发展提供催化剂,并促进其他神经科学领域的实验技术的发展。在这篇综述中,我们介绍了我们对 Cys 环受体结构和功能的当前理解。ECD 已经得到了广泛的研究。近年来,由于 nACh 受体和相关蛋白的高分辨率结构的发表,该领域的研究得到了刺激,这使得该区域的许多 Cys 环受体同源模型得以创建。在这里,我们使用 5-HT3 受体作为该家族的典型成员,描述了同源建模和配体对接如何提供有关配体相互作用的有用但非定论性信息。我们简要考虑了许多 Cys 环受体调节剂中的一些。我们讨论了 TMD 的当前结构理解,以及它如何与 ECD 连接以允许通道门控,并考虑了 ICD 的作用,其结构尚未得到很好的理解。我们还描述了一些目前正在开始揭示不同受体状态之间差异的方法,并且最终可能会显示它们之间的结构细节。

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