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对钠钾-ATP酶α亚基H5-H6跨膜和胞外结构域中氨基酸残基的分析确定苏氨酸797是哇巴因敏感性的决定因素。

Analysis of amino acid residues in the H5-H6 transmembrane and extracellular domains of Na,K-ATPase alpha subunit identifies threonine 797 as a determinant of ouabain sensitivity.

作者信息

Feng J, Lingrel J B

机构信息

Department of Molecular Genetics, Biochemistry and Microbiology, University of Cincinnati College of Medicine, Ohio 45267-0524.

出版信息

Biochemistry. 1994 Apr 12;33(14):4218-24. doi: 10.1021/bi00180a015.

Abstract

Several amino acid residues of the alpha subunit of the Na,K-ATPase have been identified which alter ouabain sensitivity. These residues are located in the N-terminal half of the alpha 1 subunit suggesting that this portion of the molecule may represent the binding site for cardiac glycosides. However, not all extracellular and transmembrane regions have been investigated, including the H5-H6 membrane-spanning region. To determine if this region of the alpha subunit contributes to ouabain sensitivity, amino acids which have the potential to form hydrogen bonds were substituted with alanine, a non-hydrogen-bonding amino acid. cDNAs encoding enzyme containing these individual amino acid replacements were expressed in ouabain-sensitive HeLa cells, and the ability of the altered enzymes to confer ouabain resistance was examined. Nineteen amino acid substitutions were investigated. T797A (Thr 797 to Ala) was the only substitution which conferred ouabain resistance to sensitive HeLa cells. Three additional substitutions at this position (T797V, T797S, and T797D) were generated in order to examine the effects of the replacements of Thr 797 on ouabain inhibition of Na,K-ATPase activity. The T797V substitution conferred ouabain resistance, but T797S and T797D substitutions did not. The ouabain-resistant cell lines expressing the T797A and T797V substitutions exhibited Na,K-ATPase activity that was 60 and 70 times more resistant to ouabain than the endogenous HeLa or sheep enzymes. The absence of a hydroxyl group at amino acid 797 may be responsible for the reduced sensitivity of the enzyme with substitutions at this position.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

已鉴定出钠钾-ATP酶α亚基的几个氨基酸残基会改变哇巴因敏感性。这些残基位于α1亚基的N端半区,表明该分子的这一部分可能代表强心苷的结合位点。然而,并非所有细胞外和跨膜区域都已被研究,包括H5-H6跨膜区域。为了确定α亚基的这一区域是否对哇巴因敏感性有贡献,将有可能形成氢键的氨基酸替换为丙氨酸(一种不形成氢键的氨基酸)。编码含有这些单个氨基酸替换的酶的cDNA在对哇巴因敏感的HeLa细胞中表达,并检测改变后的酶赋予哇巴因抗性的能力。研究了19个氨基酸替换。T797A(苏氨酸797替换为丙氨酸)是唯一能使敏感HeLa细胞产生哇巴因抗性的替换。在该位置又产生了另外三个替换(T797V、T797S和T797D),以研究苏氨酸797的替换对哇巴因抑制钠钾-ATP酶活性的影响。T797V替换赋予了哇巴因抗性,但T797S和T797D替换没有。表达T797A和T797V替换的哇巴因抗性细胞系表现出的钠钾-ATP酶活性对哇巴因的抗性比内源性HeLa或绵羊酶高60至70倍。氨基酸797处没有羟基可能是该位置替换后酶敏感性降低的原因。(摘要截断于250字)

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