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一个保守的谷氨酸负责哺乳动物阴离子交换蛋白AE1和AE2的离子选择性和pH依赖性。

A conserved glutamate is responsible for ion selectivity and pH dependence of the mammalian anion exchangers AE1 and AE2.

作者信息

Sekler I, Lo R S, Kopito R R

机构信息

Department of Biological Sciences, Stanford University, California 94305-5020, USA.

出版信息

J Biol Chem. 1995 Dec 1;270(48):28751-8. doi: 10.1074/jbc.270.48.28751.

Abstract

The erythrocyte anion exchanger AE1 (band 3) serves as an important model for the study of the mechanism of ion transport. Chemical modification of human erythrocyte AE1 has previously suggested that glutamic acid residue 681 lies within the transport pathway and can cross the permeability barrier. This glutamate is conserved in all anion exchangers sequenced to date. We examined the effect on divalent (sulfate) and monovalent (chloride and bicarbonate) anion transport of mutating the corresponding glutamates in mouse AE1 and the closely related anion exchanger, AE2. Substitution of this conserved glutamate with uncharged or basic amino acids had a negligible effect on the maximal rate of sulfate-sulfate exchange in AE-reconstituted proteoliposomes, but largely abolished the steep pH dependence of sulfate transport observed in wild-type AE1 and AE2. In contrast, exchange of monovalent anions was undetectable in cells expressing these mutants. Replacement of the conserved glutamate with aspartate abolished both monovalent and divalent anion transport. These data suggest that the conserved glutamate residue plays a dual role in determining anion selectivity and in proton coupling to sulfate transport. A model explaining the role of the conserved glutamate in promoting ion selectivity and pH regulation is discussed.

摘要

红细胞阴离子交换蛋白AE1(带3蛋白)是研究离子转运机制的重要模型。先前对人红细胞AE1的化学修饰表明,谷氨酸残基681位于转运途径内,并且能够穿过渗透屏障。这种谷氨酸在迄今为止测序的所有阴离子交换蛋白中都是保守的。我们研究了在小鼠AE1和密切相关的阴离子交换蛋白AE2中突变相应谷氨酸对二价(硫酸根)和一价(氯离子和碳酸氢根)阴离子转运的影响。用不带电荷或带碱性的氨基酸取代这种保守的谷氨酸,对AE重组蛋白脂质体中硫酸根-硫酸根交换的最大速率影响可忽略不计,但很大程度上消除了在野生型AE1和AE2中观察到的硫酸根转运对pH的强烈依赖性。相比之下,在表达这些突变体的细胞中未检测到一价阴离子的交换。用天冬氨酸取代保守的谷氨酸会同时消除一价和二价阴离子的转运。这些数据表明,保守的谷氨酸残基在决定阴离子选择性以及质子与硫酸根转运的偶联中起双重作用。本文讨论了一个解释保守谷氨酸在促进离子选择性和pH调节中作用的模型。

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