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钠钾ATP酶:镁离子的抑制模式

Na+/K(+)-ATPase: modes of inhibition by Mg2+.

作者信息

Robinson J D, Pratap P R

机构信息

Department of Pharmacology, State University of New York, Syracuse 13210.

出版信息

Biochim Biophys Acta. 1991 Jan 30;1061(2):267-78. doi: 10.1016/0005-2736(91)90292-g.

Abstract

Adding 15 mM free Mg2+ decreased Vmax of the Na+/K(+)-ATPase reaction. Mg2+ also decreased the K0.5 for K+ activation, as a mixed inhibitor, but the increased inhibition at higher K+ concentrations diminished as the Na+ concentration was raised. Inhibition was greater with Rb+ but less with Li+ when these cations substituted for K+ at pH 7.5, while at pH 8.5 inhibition was generally less and essentially the same with all three cations: implying an association between inhibition and ion occlusion. On the other hand, Mg2+ increased the K0.5 for Na(+)-activation of the Na+/K(+)-ATPase and Na(+)-ATPase reactions, as a mixed inhibitor. Changing incubation pH or temperature, or adding dimethylsulfoxide affected inhibition by Mg2+ and K0.5 for Na+ diversely. Presteady-state kinetic studies on enzyme phosphorylation, however, showed competition between Mg2+ and Na+. In the K(+)-phosphatase reaction catalyzed by this enzyme Mg2+ was a (near) competitor toward K+. Adding Na+ with K+ inhibited phosphatase activity, but under these conditions 15 mM Mg2+ stimulated rather than inhibited; still higher Mg2+ concentrations then inhibited with K+ plus Na+. Similar stimulation and inhibition occurred when Mn2+ was substituted for Mg2+, although the concentrations required were an order of magnitude less. In all these experiments no ionic substitutions were made to maintain ionic strength, since alternative cations, such as choline, produced various specific effects themselves. Kinetic analyses, in terms of product inhibition by Mg2+, require Mg2+ release at multiple steps. The data are accommodated by a scheme for the Na+/K(+)-ATPase with three alternative points for release: before MgATP binding, before K+ release and before Na+ binding. The latter alternatives necessitate two Mg2+ ions bound simultaneously to the enzyme, presumably to divalent cation-sites associated with the phosphate and the nucleotide domains of the active site.

摘要

添加15 mM游离Mg2+会降低Na+/K(+)-ATP酶反应的Vmax。Mg2+作为一种混合抑制剂,也会降低K+激活的K0.5,但随着Na+浓度升高,在较高K+浓度下增加的抑制作用会减弱。当这些阳离子在pH 7.5时替代K+时,Rb+的抑制作用更强,而Li+的抑制作用较弱,而在pH 8.5时,抑制作用通常较弱,并且三种阳离子的抑制作用基本相同:这意味着抑制作用与离子封闭之间存在关联。另一方面,Mg2+作为一种混合抑制剂,会增加Na+/K(+)-ATP酶和Na(+)-ATP酶反应中Na(+)-激活的K0.5。改变孵育pH或温度,或添加二甲基亚砜对Mg2+的抑制作用以及Na+的K0.5有不同影响。然而,对酶磷酸化的预稳态动力学研究表明Mg2+和Na+之间存在竞争。在该酶催化的K(+)-磷酸酶反应中,Mg2+是K+的(近乎)竞争者。将Na+与K+一起添加会抑制磷酸酶活性,但在这些条件下,15 mM Mg +会刺激而不是抑制;当Mg2+浓度更高时,则会与K+和Na+一起抑制。当用Mn2+替代Mg2+时也会出现类似的刺激和抑制作用,尽管所需浓度低一个数量级。在所有这些实验中,没有进行离子替代以维持离子强度,因为替代阳离子,如胆碱,本身会产生各种特定效应。就Mg2+的产物抑制而言,动力学分析需要在多个步骤释放Mg2+。这些数据可以通过Na+/K(+)-ATP酶的一个方案来解释,该方案有三个释放的替代点:在MgATP结合之前、在K+释放之前和在Na+结合之前。后一种替代需要两个Mg2+离子同时与酶结合,推测是与活性位点的磷酸和核苷酸结构域相关的二价阳离子位点。

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