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细胞内环中带电残基对α1甘氨酸受体通道离子渗透作用的表征。

Characterization of the effects of charged residues in the intracellular loop on ion permeation in alpha1 glycine receptor channels.

作者信息

Carland Jane E, Cooper Michelle A, Sugiharto Silas, Jeong Hyo-Jin, Lewis Trevor M, Barry Peter H, Peters John A, Lambert Jeremy J, Moorhouse Andrew J

机构信息

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

出版信息

J Biol Chem. 2009 Jan 23;284(4):2023-30. doi: 10.1074/jbc.M806618200. Epub 2008 Dec 2.

Abstract

The Cys loop receptor channels mediate fast synaptic transmission in the nervous system. The M2-demarcated transmembrane pore is an important determinant of their ion permeation properties. Portals within the intracellular domain are also part of the permeation pathway in cationic Cys loop receptors, with charged residues in a helical MA stretch partially lining these openings profoundly affecting channel conductance. It is unknown whether analogous portals contribute to the permeation pathway in anionic Cys loop receptors. We therefore investigated the influence of charged residues within the proposed MA stretch on functional properties of the homomeric glycine alpha1 receptor. Up to eight basic residues in the MA stretch were concurrently mutated to a negatively charged glutamate, and wild-type and mutant subunits were expressed in HEK-293 cells. Mutation of all eight residues produced a non-functional receptor. The greatest reduction in conductance at negative membrane potentials (from 92.2+/-2.8 to 60.0+/-2.2 picosiemens) was observed with glutamate present at the 377, 378, 385, and 386 positions (the 4E subunit). Inclusion of additional glutamate residues within this subunit did not decrease conductance further. Neutralizing these residues (the 4A subunit) caused a modest decrease in conductance (80.5+/-2.3 picosiemens). Outward conductance at positive potentials was not markedly affected. Anion to cation selectivity and concentration-response relationships were unaffected by the 4A or 4E mutations. Our results identify basic residues affecting conductance in the glycine receptor, suggesting that portals are part of the extended permeation pathway but that the M2-demarcated channel pore is the dominant determinant of permeation properties in glycine receptors.

摘要

半胱氨酸环受体通道介导神经系统中的快速突触传递。M2界定的跨膜孔是其离子通透特性的重要决定因素。在阳离子半胱氨酸环受体中,细胞内结构域内的通道入口也是通透途径的一部分,螺旋状MA片段中的带电荷残基部分排列在这些开口处,深刻影响通道电导。目前尚不清楚类似的通道入口是否对半胱氨酸环阴离子受体的通透途径有贡献。因此,我们研究了假定的MA片段中带电荷残基对同聚甘氨酸α1受体功能特性的影响。MA片段中多达八个碱性残基同时突变为带负电荷的谷氨酸,野生型和突变亚基在HEK-293细胞中表达。所有八个残基的突变产生了无功能的受体。在负膜电位下,当377、378、385和386位存在谷氨酸(4E亚基)时,观察到最大的电导降低(从92.2±2.8皮西门子降至60.0±2.2皮西门子)。在该亚基中加入额外的谷氨酸残基并没有进一步降低电导。中和这些残基(4A亚基)导致电导适度降低(80.5±2.3皮西门子)。正电位下的外向电导没有受到明显影响。4A或4E突变不影响阴离子与阳离子的选择性以及浓度-反应关系。我们结果确定了影响甘氨酸受体电导的碱性残基,表明通道入口是扩展通透途径的一部分,但M2界定的通道孔是甘氨酸受体通透特性的主要决定因素。

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