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钠/钾转运ATP酶的寡聚性质。

The oligomeric nature of Na/K-transport ATPase.

作者信息

Taniguchi K, Kaya S, Abe K, Mårdh S

机构信息

Biological Chemistry Division of Chemistry, Graduate School of Science, Hokkaido University, Sapporo 060-0810, Japan.

出版信息

J Biochem. 2001 Mar;129(3):335-42. doi: 10.1093/oxfordjournals.jbchem.a002862.

Abstract

Since the discovery of Na/K-ATPase, evidence has accumulated to suggest that 1 mol of ATP hydrolysis occurs via the Na(+)-occluded ADP-sensitive phosphoenzyme, the K(+)-sensitive phosphoenzyme and the K(+)-occluded enzyme accompanying active transport of 3Na(+) and 2K(+) according the Post-Albers scheme. However, some controversial issues have arisen concerning whether the functional unit of the enzyme is an alpha beta-protomer or a much higher oligomer, which would be related to the mechanism of transport, either sequential or simultaneous. Detailed studies of oligomer interaction and the reactivity of the enzyme and a comparison of the extent of phosphorylation with ligand-binding capacities in the presence or absence of ATP hydrolysis and others strongly suggest that the functional unit of the enzyme in the membrane is a tetraprotomer, (alpha beta)(4). They also suggest that each reaction intermediate of the Post-Albers scheme, respectively, reflects half of the site property of the intermediate and that another half binds ATP. These data may be useful not only to answer the long-standing question of whether the mechanism functions in the presence of both Na(+) and K(+) but also contribute to a better understanding of the mechanism of P-type pump ATPase in general.

摘要

自发现钠钾-ATP酶以来,已有证据表明,根据波斯特-阿尔伯斯机制,伴随3个钠离子和2个钾离子的主动转运,1摩尔ATP水解通过钠离子封闭的ADP敏感磷酸酶、钾离子敏感磷酸酶和钾离子封闭酶发生。然而,关于该酶的功能单位是αβ原聚体还是更高的寡聚体出现了一些有争议的问题,这与转运机制(顺序或同时转运)有关。对寡聚体相互作用和酶反应性的详细研究,以及在有或没有ATP水解等情况下磷酸化程度与配体结合能力的比较,强烈表明该酶在膜中的功能单位是四聚体(αβ)4。这些研究还表明,波斯特-阿尔伯斯机制的每个反应中间体分别反映了中间体一半的位点特性,另一半则结合ATP。这些数据不仅可能有助于回答长期存在的关于该机制在同时存在钠离子和钾离子时是否起作用的问题,而且总体上有助于更好地理解P型泵ATP酶的机制。

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