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半胱氨酸环受体胞外结构域中的离子选择性过滤器揭示了离子传导的决定因素。

An ion selectivity filter in the extracellular domain of Cys-loop receptors reveals determinants for ion conductance.

作者信息

Hansen Scott B, Wang Hai-Long, Taylor Palmer, Sine Steven M

机构信息

Department of Pharmacology, Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California, San Diego, La Jolla, California 92093-0650, USA.

出版信息

J Biol Chem. 2008 Dec 26;283(52):36066-70. doi: 10.1074/jbc.C800194200. Epub 2008 Oct 21.

DOI:10.1074/jbc.C800194200
PMID:18940802
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2662287/
Abstract

Neurotransmitter binding to Cys-loop receptors promotes a prodigious transmembrane flux of several million ions/s, but to date, structural determinants of ion flux have been identified flanking the membrane-spanning region. Using x-ray crystallography, sequence analysis, and single-channel recording, we identified a novel determinant of ion conductance near the point of entry of permeant ions. Co-crystallization of acetylcholine-binding protein with sulfate anions revealed coordination of SO4(2-) with a ring of lysines at a position equivalent to 24 A above the lipid membrane in homologous Cys-loop receptors. Analysis of multiple sequence alignments revealed that residues equivalent to the ring of lysines are negatively charged in cation-selective receptors but are positively charged in anion-selective receptors. Charge reversal of side chains at homologous positions in the nicotinic receptor from the motor end plate decreases unitary conductance up to 80%. Selectivity filters stemming from transmembrane alpha-helices have similar pore diameters and compositions of amino acids. These findings establish that when the channel opens under a physiological electrochemical gradient, permeant ions are initially stabilized within the extracellular vestibule of Cys-loop receptors, and this stabilization is a major determinant of ion conductance.

摘要

神经递质与半胱氨酸环受体结合可促进每秒数百万个离子的巨大跨膜通量,但迄今为止,离子通量的结构决定因素已在跨膜区域两侧被确定。利用X射线晶体学、序列分析和单通道记录,我们在通透离子进入点附近确定了一个新的离子电导率决定因素。乙酰胆碱结合蛋白与硫酸根阴离子的共结晶揭示了SO4(2-)与一组赖氨酸的配位,该位置相当于同源半胱氨酸环受体中脂膜上方24埃处。对多个序列比对的分析表明,与赖氨酸环等效的残基在阳离子选择性受体中带负电荷,而在阴离子选择性受体中带正电荷。运动终板烟碱样受体中同源位置侧链的电荷反转使单位电导率降低高达80%。来自跨膜α螺旋的选择性过滤器具有相似的孔径和氨基酸组成。这些发现表明,当通道在生理电化学梯度下打开时,通透离子最初在半胱氨酸环受体的细胞外前庭内被稳定,这种稳定是离子电导率的主要决定因素。