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配体门控离子通道的半胱氨酸环超家族:受体结构对功能的影响。

The Cys-loop superfamily of ligand-gated ion channels: the impact of receptor structure on function.

作者信息

Connolly C N, Wafford K A

机构信息

Division of Pathology and Neuroscience, Ninewells Medical School, University of Dundee, Dundee DD1 9SY, UK.

出版信息

Biochem Soc Trans. 2004 Jun;32(Pt3):529-34. doi: 10.1042/BST0320529.

Abstract

The Cys-loop receptors constitute an important superfamily of LGICs (ligand-gated ion channels) comprising receptors for acetylcholine, 5-HT3 (5-hydroxytryptamine; 5-HT3 receptors), glycine and GABA (gamma-aminobutyric acid; GABAA receptors). A vast knowledge of the structure of the Cys-loop superfamily and its impact on channel function have been accrued over the last few years, leading to exciting new proposals on how ion channels open and close in response to agonist binding. Channel opening is initiated by the extracellular association of agonists to discrete binding pockets, leading to dramatic conformational changes, culminating in the opening of a central ion pore. The importance of channel structure is exemplified in the allosteric modulation of channel function by the binding of other molecules to distinct sites on the channel, which exerts an additional level of control on their function. The subsequent conformational changes (gating) lead to channel opening and ion transport. Following channel pore opening, ion selectivity is determined by receptor structure in, and around, the ion pore. As a final level of control, cytoplasmic determinants control the magnitude (conductance) of ion flow into the cell. Thus the Cys-loop receptors are complex molecular motors, with moving parts, which can transduce extracellular signals across the plasma membrane. Once the full mechanical motions involved are understood, it may be possible to design sophisticated therapeutic agents to modulate their activity, or at least be able to throw a molecular spanner into the works!

摘要

半胱氨酸环受体构成了配体门控离子通道(LGICs)的一个重要超家族,包括乙酰胆碱受体、5-羟色胺受体(5-HT3受体)、甘氨酸受体和γ-氨基丁酸受体(GABAA受体)。在过去几年中,人们对半胱氨酸环超家族的结构及其对通道功能的影响有了广泛的了解,从而产生了关于离子通道如何响应激动剂结合而开启和关闭的令人兴奋的新见解。通道的开启是由激动剂在细胞外与离散的结合口袋结合引发的,导致显著的构象变化,最终导致中央离子孔的开放。通道结构的重要性体现在其他分子与通道上不同位点的结合对通道功能的变构调节上,这对其功能施加了额外的控制水平。随后的构象变化(门控)导致通道开放和离子转运。通道孔开放后,离子选择性由离子孔内及其周围的受体结构决定。作为最后的控制水平,细胞质决定因素控制离子流入细胞的幅度(电导率)。因此,半胱氨酸环受体是复杂的分子马达,具有可移动的部分,能够将细胞外信号跨质膜进行转导。一旦了解了所涉及的完整机械运动,就有可能设计出复杂的治疗药物来调节它们的活性,或者至少能够在这个过程中“搅局”!

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