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钠钾ATP酶跨膜发夹结构M5-M6中的苯丙氨酸783、苏氨酸797和天冬氨酸804在哇巴因结合中起关键作用。

Phe783, Thr797, and Asp804 in transmembrane hairpin M5-M6 of Na+,K+-ATPase play a key role in ouabain binding.

作者信息

Qiu Li Yan, Koenderink Jan B, Swarts Herman G P, Willems Peter H G M, De Pont Jan Joep H H M

机构信息

Department of Biochemistry, Nijmegen Center for Molecular Life Sciences, University of Nijmegen, P. O. Box 9101, 6500 HB Nijmegen, The Netherlands.

出版信息

J Biol Chem. 2003 Nov 21;278(47):47240-4. doi: 10.1074/jbc.M308833200. Epub 2003 Sep 12.

Abstract

Ouabain is a glycoside that binds to and inhibits the action of Na+,K+-ATPase. Little is known, however, about the specific requirements of the protein surface for glycoside binding. Using chimeras of gastric H+,K+-ATPase and Na+,K+-ATPase, we demonstrated previously that the combined presence of transmembrane hairpins M3-M4 and M5-M6 of Na+,K+-ATPase in a backbone of H+,K+-ATPase (HN34/56) is both required and sufficient for high affinity ouabain binding. Since replacement of transmembrane hairpin M3-M4 by the N terminus up to transmembrane segment 3 (HNN3/56) resulted in a low affinity ouabain binding, hairpin M5-M6 seems to be essential for ouabain binding. To assess which residues of M5-M6 are required for ouabain action, we divided this transmembrane hairpin in seven parts and individually replaced these parts by the corresponding sequences of H+,K+-ATPase in chimera HN34/56. Three of these chimeras failed to bind ouabain following expression in Xenopus laevis oocytes. Altogether, these three chimeras contained 7 amino acids that were specific for Na+,K+-ATPase. Individual replacement of these 7 amino acids by the corresponding amino acids in H+,K+-ATPase revealed a dramatic loss of ouabain binding for F783Y, T797C, and D804E. As a proof of principle, the Na+,K+-ATPase equivalents of these 3 amino acids were introduced in different combinations in chimera HN34. The presence of all 3 amino acids appeared to be required for ouabain action. Docking of ouabain onto a three-dimensional-model of Na+,K+-ATPase suggests that Asp804, in contrast to Phe783 and Thr797, does not actually form part of the ouabain-binding pocket. Most likely, the presence of this amino acid is required for adopting of the proper conformation for ouabain binding.

摘要

哇巴因是一种糖苷,它能结合并抑制钠钾ATP酶的作用。然而,关于蛋白质表面与糖苷结合的具体要求却知之甚少。利用胃质子钾ATP酶和钠钾ATP酶的嵌合体,我们之前证明了在质子钾ATP酶骨架(HN34/56)中,钠钾ATP酶的跨膜发夹结构M3-M4和M5-M6同时存在,对于高亲和力哇巴因结合是必需且充分的。由于用N端直至跨膜片段3替换跨膜发夹结构M3-M4(HNN3/56)导致哇巴因结合亲和力降低,发夹结构M5-M6似乎对哇巴因结合至关重要。为了评估M5-M6的哪些残基是哇巴因作用所必需的,我们将这个跨膜发夹结构分成七个部分,并在嵌合体HN34/56中分别用质子钾ATP酶的相应序列替换这些部分。其中三个嵌合体在非洲爪蟾卵母细胞中表达后未能结合哇巴因。这三个嵌合体总共包含7个钠钾ATP酶特有的氨基酸。用质子钾ATP酶中的相应氨基酸逐个替换这7个氨基酸,结果显示F783Y、T797C和D804E导致哇巴因结合能力大幅丧失。作为原理验证,将这3个氨基酸的钠钾ATP酶对应物以不同组合引入嵌合体HN34。所有3个氨基酸的存在似乎是哇巴因发挥作用所必需的。将哇巴因对接至钠钾ATP酶的三维模型表明,与苯丙氨酸783和苏氨酸797不同,天冬氨酸804实际上并不构成哇巴因结合口袋的一部分。很可能,这个氨基酸的存在是为了使哇巴因结合形成合适的构象所必需的。

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