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第二个二价金属离子的结合对于嗜盐糖杆菌ATP酶中ATP水解的激活及其被紧密结合的ADP抑制是必要的。

The binding of a second divalent metal ion is necessary for the activation of ATP hydrolysis and its inhibition by tightly bound ADP in the ATPase from Halobacterium saccharovorum.

作者信息

Schobert B

机构信息

Department of Physiology and Biophysics, University of California, Irvine 92717.

出版信息

J Biol Chem. 1992 May 25;267(15):10252-7.

PMID:1534083
Abstract

A binding site for divalent metal ions on the ATPase from Halobacterium saccharovorum is proposed. This site is different from the catalytic site which binds ATP and a complexed divalent metal ion. Occupation of the second site greatly stimulates the rate of ATP hydrolysis and the affinity of the catalytic site for the metal ion-ATP complex. The time-dependent inhibition of the ATPase, which occurs during catalysis and which is known to be caused by the retention of ADP, is also dependent on the occupation of this metal ion binding site. The binding of the metal ion apparently induces extremely tight binding of ADP after the departure of Pi. Mg2+, Mn2+, Zn2+, Co2+, and Ca2+ were tested and showed both the activating and the inhibitory effects, although their binding constants for ATP and the second metal ion binding site were quite different. The characteristic shapes of the nonlinear ATP hydrolysis curves obtained with different metal ions, and different ratios of metal ion and ATP, could be explained with the established dissociation constants. On this basis, a model for the ATPase was developed with two catalytic cycles: one in which the second metal ion binding site is occupied, and another in which it is empty. These pathways are connected by metal ion-dependent equilibria.

摘要

有人提出嗜糖嗜盐菌ATP酶上存在一个二价金属离子结合位点。该位点不同于结合ATP和复合二价金属离子的催化位点。占据第二个位点会极大地刺激ATP水解速率以及催化位点对金属离子 - ATP复合物的亲和力。在催化过程中发生的、已知由ADP滞留引起的ATP酶随时间的抑制作用,也取决于该金属离子结合位点的占据情况。金属离子的结合显然在磷酸根离去后诱导了ADP的极强结合。测试了Mg2 +、Mn2 +、Zn2 +、Co2 +和Ca2 +,它们都显示出激活和抑制作用,尽管它们对ATP和第二个金属离子结合位点的结合常数有很大差异。用已确定的解离常数可以解释用不同金属离子以及不同金属离子与ATP比例获得的非线性ATP水解曲线的特征形状。在此基础上,开发了一个ATP酶模型,该模型有两个催化循环:一个是第二个金属离子结合位点被占据的循环,另一个是该位点为空的循环。这些途径通过金属离子依赖的平衡相互连接。

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