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ClC-2G氯离子通道pH传感器的鉴定及化学修饰激活

Identification of the pH sensor and activation by chemical modification of the ClC-2G Cl- channel.

作者信息

Stroffekova K, Kupert E Y, Malinowska D H, Cuppoletti J

机构信息

Department of Molecular and Cellular Physiology, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267-0576, USA.

出版信息

Am J Physiol. 1998 Oct;275(4):C1113-23. doi: 10.1152/ajpcell.1998.275.4.C1113.

Abstract

Rabbit and human ClC-2G Cl- channels are voltage sensitive and activated by protein kinase A and low extracellular pH. The objective of the present study was to investigate the mechanism involved in acid activation of the ClC-2G Cl- channel and to determine which amino acid residues play a role in this acid activation. Channel open probability (Po) at +/-80 mV holding potentials increased fourfold in a concentration-dependent manner with extracellular H+ concentration (that is, extracellular pH, pHtrans), with an apparent acidic dissociation constant of pH 4.95 +/- 0.27. 1-Ethyl-3(3-dimethylaminopropyl)carbodiimide-catalyzed amidation of the channel with glycine methyl ester increased Po threefold at pHtrans 7.4, at which the channel normally exhibits low Po. With extracellular pH reduction (protonation) or amidation, increased Po was due to a significant increase in open time constants and a significant decrease in closed time constants of the channel gating, and this effect was insensitive to applied voltage. With the use of site-directed mutagenesis, the extracellular region EELE (amino acids 416-419) was identified as the pH sensor and amino acid Glu-419 was found to play the key or predominant role in activation of the ClC-2G Cl- channel by extracellular acid.

摘要

兔和人的ClC-2G氯离子通道对电压敏感,并可被蛋白激酶A和低细胞外pH激活。本研究的目的是探究ClC-2G氯离子通道酸激活所涉及的机制,并确定哪些氨基酸残基在这种酸激活中起作用。在±80 mV的钳制电位下,通道开放概率(Po)随细胞外H⁺浓度(即细胞外pH,pHtrans)以浓度依赖的方式增加了四倍,表观酸解离常数为pH 4.95±0.27。用甘氨酸甲酯通过1-乙基-3(3-二甲基氨基丙基)碳二亚胺催化通道酰胺化,在pHtrans 7.4时Po增加了三倍,此时通道通常表现出低Po。随着细胞外pH降低(质子化)或酰胺化,Po增加是由于通道门控的开放时间常数显著增加和关闭时间常数显著降低,并且这种效应对施加的电压不敏感。通过定点诱变,细胞外区域EELE(氨基酸416-419)被确定为pH传感器,并且发现氨基酸Glu-419在细胞外酸激活ClC-2G氯离子通道中起关键或主要作用。

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