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水通道蛋白-2抗利尿激素水通道的结构

Structure of aquaporin-2 vasopressin water channel.

作者信息

Bai L, Fushimi K, Sasaki S, Marumo F

机构信息

Second Department of Internal Medicine, School of Medicine, Tokyo Medical and Dental University, 1-5-45 Yushima, Bunkyo-ku, Tokyo 113, Japan.

出版信息

J Biol Chem. 1996 Mar 1;271(9):5171-6. doi: 10.1074/jbc.271.9.5171.

Abstract

Aquaporin-2 (AQP-2) is a vasopressin-regulated water channel in the kidney collecting duct. AQP-2 is selectively permeable to water molecule and is translocated between the apical membrane and subapical endosomes in response to vasopressin. To investigate the localization and structure of the aqueous pathway of the AQP-2 water channel, a series of site-directed mutants was constructed and functionally analyzed. Insertion of N-glycosylation reporter sequence into each hydrophilic loop (HL) indicated that AQP-2 has a six-membrane spanning topology and that insertional mutations in HL-2 or HL-5 do not alter water channel function. Mercury-sensitive site of AQP-2 is located near the second asparagine-proline-alanine (NPA) domain at cysteine 181, but not near the first NPA domain. Replacement of HL-3 or HL-4 with the corresponding part of Escherichia coli glycerol facilitator abolished water channel function without changing plasma membrane expression of the channel protein. Introduction of cysteine residues in His-122, Asn-123, Gly-154, Asp-155, or Asn-156 induced partial mercury sensitivity, and point mutations in asparagine 123 significantly altered water permeability. Our results implicate that the structure of AQP-2 is different from models previously proposed for AQP-1 and that HL-3 and HL-4 are closely located to the aqueous pathway.

摘要

水通道蛋白2(AQP - 2)是肾集合管中一种受抗利尿激素调节的水通道。AQP - 2对水分子具有选择性通透性,并会根据抗利尿激素的作用在顶端膜和顶端下的内体之间发生转运。为了研究AQP - 2水通道水通路的定位和结构,构建了一系列定点突变体并进行功能分析。将N - 糖基化报告序列插入每个亲水环(HL)表明,AQP - 2具有六次跨膜拓扑结构,且HL - 2或HL - 5中的插入突变不会改变水通道功能。AQP - 2的汞敏感位点位于半胱氨酸181附近的第二个天冬酰胺 - 脯氨酸 - 丙氨酸(NPA)结构域附近,而非第一个NPA结构域附近。用大肠杆菌甘油转运蛋白的相应部分替换HL - 3或HL - 4会消除水通道功能,而不会改变通道蛋白的质膜表达。在组氨酸122、天冬酰胺123、甘氨酸154、天冬氨酸155或天冬酰胺156中引入半胱氨酸残基会诱导部分汞敏感性,天冬酰胺123中的点突变会显著改变水通透性。我们的结果表明,AQP - 2的结构与先前针对AQP - 1提出的模型不同,且HL - 3和HL - 4与水通路紧密相邻。

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