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钒酸盐与肌浆网中钙镁依赖型ATP酶相互作用的动力学研究。

A kinetic study of the interaction of vanadate with the Ca2+ + Mg2+-dependent ATPase from sarcoplasmic reticulum.

作者信息

Ortiz A, García-Carmona F, García-Cánovas F, Gómez-Fernández J C

出版信息

Biochem J. 1984 Jul 1;221(1):213-22. doi: 10.1042/bj2210213.

Abstract

Ca2+ + Mg2+-dependent ATPase from sarcoplasmic reticulum was inhibited by preincubation with vanadate. When the inhibited enzyme was preincubated in the presence of vanadate and assayed in its absence, a slow reactivation process was observed. This slow, hysteretic, process was exploited to study the influence of Ca2+ and ATP on the dissociation of vanadate. Ca2+ alone slowly displaced vanadate from the inhibited enzyme, and a rate constant of 0.1 min-1, at 25 degrees C, was calculated for this re-activation process. However, ATP re-activated with an apparent constant that hyperbolically depended on ATP concentration, and from it a rate constant for vanadate dissociation induced by ATP of 0.5 min-1 was calculated. It is deduced from the kinetic studies that ATP binds to the enzyme-vanadate complex, forming a ternary complex, with a dissociation constant of 4 microM, and that this binding accelerates vanadate dissociation. Binding experiments with [14C]ATP showed that ATP binds to the enzyme-vanadate complex with a dissociation constant of 12 microM, i.e. the affinities calculated with the isotope technique and the kinetic procedure are of the same order of magnitude.

摘要

肌浆网的Ca2+ + Mg2+依赖性ATP酶在与钒酸盐预孵育后受到抑制。当被抑制的酶在钒酸盐存在下预孵育并在其不存在的情况下进行测定时,观察到一个缓慢的重新激活过程。利用这个缓慢的、滞后的过程来研究Ca2+和ATP对钒酸盐解离的影响。单独的Ca2+能缓慢地将钒酸盐从被抑制的酶上置换下来,在25℃下,这个重新激活过程的速率常数计算为0.1 min-1。然而,ATP以一个明显依赖于ATP浓度的双曲线常数进行重新激活,由此计算出ATP诱导钒酸盐解离的速率常数为0.5 min-1。从动力学研究中推断,ATP与酶 - 钒酸盐复合物结合,形成一个解离常数为4 microM的三元复合物,并且这种结合加速了钒酸盐的解离。用[14C]ATP进行的结合实验表明,ATP与酶 - 钒酸盐复合物结合的解离常数为12 microM,即通过同位素技术和动力学方法计算出的亲和力处于相同的数量级。

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