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一个胞质区域决定5-羟色胺3型受体中的单通道电导。

A cytoplasmic region determines single-channel conductance in 5-HT3 receptors.

作者信息

Kelley Stephen P, Dunlop James I, Kirkness Ewen F, Lambert Jeremy J, Peters John A

机构信息

Neurosciences Institute, Department of Pharmacology and Neuroscience, Ninewells Hospital and Medical School, The University of Dundee, Dundee DD1 9SY, UK.

出版信息

Nature. 2003 Jul 17;424(6946):321-4. doi: 10.1038/nature01788.

Abstract

5-hydroxytryptamine type 3 (5-HT3) receptors are cation-selective transmitter-gated ion channels of the Cys-loop superfamily. The single-channel conductance of human recombinant 5-HT3 receptors assembled as homomers of 5-HT3A subunits, or heteromers of 5-HT3A and 5-HT3B subunits, are markedly different, being 0.4 pS (refs 6, 9) and 16 pS (ref. 7), respectively. Paradoxically, the channel-lining M2 domain of the 5-HT3A subunit would be predicted to promote cation conduction, whereas that of the 5-HT3B subunit would not. Here we describe a determinant of single-channel conductance that can explain these observations. By constructing chimaeric 5-HT3A and 5-HT3B subunits we identified a region (the 'HA-stretch') within the large cytoplasmic loop of the receptor that markedly influences channel conductance. Replacement of three arginine residues unique to the HA-stretch of the 5-HT3A subunit by their 5-HT3B subunit counterparts increased single-channel conductance 28-fold. Significantly, ultrastructural studies of the Torpedo nicotinic acetylcholine receptor indicate that the key residues might frame narrow openings that contribute to the permeation pathway. Our findings solve the conundrum of the anomalously low conductance of homomeric 5-HT3A receptors and indicate an important function for the HA-stretch in Cys-loop transmitter-gated ion channels.

摘要

5-羟色胺3型(5-HT3)受体是半胱氨酸环超家族的阳离子选择性递质门控离子通道。由5-HT3A亚基的同聚体或5-HT3A与5-HT3B亚基的异聚体组装而成的人重组5-HT3受体的单通道电导明显不同,分别为0.4皮西门子(参考文献6、9)和16皮西门子(参考文献7)。矛盾的是,预计5-HT3A亚基的通道内衬M2结构域会促进阳离子传导,而5-HT3B亚基的则不会。在此,我们描述了一个可以解释这些观察结果的单通道电导决定因素。通过构建嵌合的5-HT3A和5-HT3B亚基,我们在受体的大细胞质环内确定了一个区域(“HA延伸区”),该区域对通道电导有显著影响。将5-HT3A亚基HA延伸区特有的三个精氨酸残基替换为5-HT3B亚基对应的残基,可使单通道电导增加28倍。重要的是,对电鳐烟碱型乙酰胆碱受体的超微结构研究表明,关键残基可能构成了有助于渗透途径的狭窄开口。我们的研究结果解决了同聚体5-HT3A受体电导异常低的难题,并表明HA延伸区在半胱氨酸环递质门控离子通道中具有重要功能。

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