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大鼠肾脏钠钾ATP酶α亚基第4跨膜段中Pro328和Leu332改变的功能后果

Functional consequences of alterations to Pro328 and Leu332 located in the 4th transmembrane segment of the alpha-subunit of the rat kidney Na+,K(+)-ATPase.

作者信息

Vilsen B

机构信息

Danish Biomembrane Research Centre, Institute of Physiology, University of Aarhus.

出版信息

FEBS Lett. 1992 Dec 21;314(3):301-7. doi: 10.1016/0014-5793(92)81494-7.

Abstract

Site-specific mutagenesis was used to analyse the functional roles of the residues Pro328 and Leu332 located in the conserved PEGLL motif of the predicted transmembrane helix M4 in the alpha 1-subunit of the ouabain resistant rat kidney Na+,K(+)-ATPase. cDNAs encoding either of the Na+,K(+)-ATPase mutants Pro328-->Ala and Leu332-->Ala, and wild type, were cloned into the expression vector pMT2 and transfected into COS-1 cells. Ouabain-resistant clones growing in the presence of 10 microM ouabain were isolated, and the Na+,K+, ATP and pH dependencies of the Na+,K(+)-ATPase activity measured in the presence of 10 microM ouabain were analysed. Under these conditions the exogenous expressed Na+,K(+)-ATPase contributed more than 95% of the Na+,K(+)-ATPase activity. The Pro328-->Ala mutant displayed a reduced apparent affinity for Na+ (K0.5 (Na+) 13.04 mM), relative to the wild type (K0.5 (Na+) 7.13 mM). By contrast, the apparent affinity for Na+ displayed by the Leu332-->Ala mutant was increased (K0.5 (Na+) 3.92 mM). Either of the mutants exhibited lower apparent affinity for K+ relative to the wild type (K0.5 (K+) 2.46 mM for Pro328-->Ala and 1.97 mM for Leu332-->Ala, compared with 0.78 mM for wild type). Both mutants exhibited higher apparent affinity for ATP than the wild type (K0.5 (ATP) 0.086 mM for Pro328-->Ala and 0.042 mM for Leu332-->Ala, compared with 0.287 mM for wild type). The influence of pH was in accordance with an acceleration of the E2 (K)-->E1 transition in the mutants relative to the wild type. These data are consistent with a role of Pro328 and Leu332 in the stabilization of the E2 form and of Pro328 in Na+ binding. The possible role of the mutated residues in K+ binding is discussed.

摘要

采用位点特异性诱变技术分析了哇巴因抗性大鼠肾钠钾ATP酶α1亚基预测跨膜螺旋M4保守PEGLL基序中Pro328和Leu332残基的功能作用。将编码钠钾ATP酶突变体Pro328→Ala和Leu332→Ala以及野生型的cDNA克隆到表达载体pMT2中,并转染到COS-1细胞中。分离出在10μM哇巴因存在下生长的哇巴因抗性克隆,并分析在10μM哇巴因存在下测得的钠钾ATP酶活性对钠、钾、ATP和pH的依赖性。在这些条件下,外源表达的钠钾ATP酶贡献了超过95%的钠钾ATP酶活性。与野生型(K0.5(Na+)7.13 mM)相比,Pro328→Ala突变体对Na+的表观亲和力降低(K0.5(Na+)13.04 mM)。相比之下,Leu332→Ala突变体对Na+的表观亲和力增加(K0.5(Na+)3.92 mM)。相对于野生型,这两种突变体对K+的表观亲和力均较低(Pro328→Ala的K0.5(K+)为2.46 mM,Leu332→Ala的K0.5(K+)为1.97 mM,而野生型为0.78 mM)。这两种突变体对ATP的表观亲和力均高于野生型(Pro328→Ala的K0.5(ATP)为0.086 mM,Leu332→Ala的K0.5(ATP)为0.042 mM,而野生型为0.287 mM)。pH的影响与突变体相对于野生型E2(K)→E1转变的加速一致。这些数据与Pro328和Leu332在稳定E2形式以及Pro328在Na+结合中的作用一致。讨论了突变残基在K+结合中的可能作用。

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