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钠钾ATP酶α亚基丝氨酸775和谷氨酸779在决定钠钾泵的细胞外钾离子及膜电位依赖性特性中的作用。

The role of Na,K-ATPase alpha subunit serine 775 and glutamate 779 in determining the extracellular K+ and membrane potential-dependent properties of the Na,K-pump.

作者信息

Peluffo R D, Argüello J M, Berlin J R

机构信息

Department of Pharmacology and Physiology, University of Medicine and Dentistry of New Jersey, Newark, New Jersey 07103, USA.

出版信息

J Gen Physiol. 2000 Jul 1;116(1):47-59. doi: 10.1085/jgp.116.1.47.

Abstract

The roles of Ser775 and Glu779, two amino acids in the putative fifth transmembrane segment of the Na,K-ATPase alpha subunit, in determining the voltage and extracellular K+ (K+(o)) dependence of enzyme-mediated ion transport, were examined in this study. HeLa cells expressing the alpha1 subunit of sheep Na,K-ATPase were voltage clamped via patch electrodes containing solutions with 115 mM Na+ (37 degrees C). Na,K-pump current produced by the ouabain-resistant control enzyme (RD), containing amino acid substitutions Gln111Arg and Asn122Asp, displayed a membrane potential and K+(o) dependence similar to wild-type Na,K-ATPase during superfusion with 0 and 148 mM Na+-containing salt solutions. Additional substitution of alanine at Ser775 or Glu779 produced 155- and 15-fold increases, respectively, in the K+(o) concentration that half-maximally activated Na,K-pump current at 0 mV in extracellular Na+-free solutions. However, the voltage dependence of Na,K-pump current was unchanged in RD and alanine-substituted enzymes. Thus, large changes in apparent K+(o) affinity could be produced by mutations in the fifth transmembrane segment of the Na,K-ATPase with little effect on voltage-dependent properties of K+ transport. One interpretation of these results is that protein structures responsible for the kinetics of K+(o) binding and/or occlusion may be distinct, at least in part, from those that are responsible for the voltage dependence of K+(o) binding to the Na,K-ATPase.

摘要

本研究考察了钠钾ATP酶α亚基假定的第五个跨膜片段中的两个氨基酸Ser775和Glu779在决定酶介导的离子转运的电压和细胞外钾离子(K+(o))依赖性方面的作用。通过含有115 mM Na+(37摄氏度)溶液的膜片电极对表达绵羊钠钾ATP酶α1亚基的HeLa细胞进行电压钳制。由含有氨基酸替代Gln111Arg和Asn122Asp的哇巴因抗性对照酶(RD)产生的钠钾泵电流,在与0和148 mM含Na+盐溶液灌流期间,表现出与野生型钠钾ATP酶相似的膜电位和K+(o)依赖性。在Ser775或Glu779处额外替换丙氨酸,在细胞外无Na+溶液中,分别使在0 mV时半最大激活钠钾泵电流的K+(o)浓度增加了155倍和15倍。然而,RD和丙氨酸替代酶中钠钾泵电流的电压依赖性没有改变。因此,钠钾ATP酶第五个跨膜片段中的突变可导致表观K+(o)亲和力发生巨大变化,而对K+转运的电压依赖性特性影响很小。这些结果的一种解释是,负责K+(o)结合和/或封闭动力学的蛋白质结构可能至少部分与负责K+(o)与钠钾ATP酶结合的电压依赖性的结构不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/000e/2229616/8ea699f259ef/JGP8120.f1.jpg

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