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通过使用附加型表达载体鉴定出的大鼠钠钾ATP酶α2亚型的哇巴因抗性突变体。

Ouabain-resistant mutants of the rat Na,K-ATPase alpha 2 isoform identified by using an episomal expression vector.

作者信息

Canfield V, Emanuel J R, Spickofsky N, Levenson R, Margolskee R F

机构信息

Roche Institute of Molecular Biology, Roche Research Center, Nutley, New Jersey 07110-1199.

出版信息

Mol Cell Biol. 1990 Apr;10(4):1367-72. doi: 10.1128/mcb.10.4.1367-1372.1990.

Abstract

Site-directed mutagenesis was used to identify residues responsible for the greater than 1,000-fold difference in ouabain sensitivity between the rat Na,K-ATPase alpha 1 and alpha 2 isoforms. A series of mutagenized cDNAs was constructed that replaced residues of the rat alpha 2 subunit with the corresponding residues from the rat alpha 1 subunit. These cDNAs were cloned into a mammalian episomal expression vector (EBOpLPP) and expressed in ouabain-sensitive primate cells. Either of two single substitutions introduced into the rat alpha 2 subunit cDNA (Leu-111----Arg or Asn-122----Asp) conferred partial resistance (approximately 10 microM ouabain) upon transformed cells. This resistance was intermediate between the levels conferred by the rat alpha 1 cDNA (approximately 500 microM ouabain) and the rat alpha 2 cDNA (approximately 0.2 microM ouabain). A double substitution of the rat alpha 2 cDNA (Leu-111----Arg and Asn-122----Asp) conferred a resistance level equivalent to that obtained with rat alpha 1. These results demonstrate that the residues responsible for isoform-specific differences in ouabain sensitivity are located at the end of the H1-H2 extracellular domain. The combination of site-directed mutagenesis and episomal expression provides a useful system for the selection and analysis of mutants.

摘要

利用定点诱变来确定导致大鼠钠钾ATP酶α1和α2亚型哇巴因敏感性相差1000倍以上的残基。构建了一系列诱变cDNA,用大鼠α1亚基的相应残基替换大鼠α2亚基的残基。将这些cDNA克隆到哺乳动物附加型表达载体(EBOpLPP)中,并在对哇巴因敏感的灵长类细胞中表达。导入大鼠α2亚基cDNA的两个单取代(Leu-111→Arg或Asn-122→Asp)中的任何一个都赋予转化细胞部分抗性(约10μM哇巴因)。这种抗性介于大鼠α1 cDNA(约500μM哇巴因)和大鼠α2 cDNA(约0.2μM哇巴因)所赋予的水平之间。大鼠α2 cDNA的双取代(Leu-111→Arg和Asn-122→Asp)赋予的抗性水平与大鼠α1获得的抗性水平相当。这些结果表明,导致哇巴因敏感性亚型特异性差异的残基位于H1-H2细胞外结构域的末端。定点诱变和附加型表达的结合为突变体的筛选和分析提供了一个有用的系统。

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