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钙和钒酸盐与肌浆网Ca2+-ATP酶的同时结合。

Simultaneous binding of calcium and vanadate to the Ca2+-ATPase of sarcoplasmic reticulum.

作者信息

Markus S, Priel Z, Chipman D M

出版信息

Biochim Biophys Acta. 1986 Nov 7;874(1):128-35. doi: 10.1016/0167-4838(86)90109-3.

Abstract

The interaction of vanadate with the Ca2+-ATPase of sarcoplasmic reticulum vesicles has been studied by making use of the ATPase activity as a measure of uncomplexed enzyme. The binding/dissociation is slow, so that initial rates can be used to study the equilibrium binding. The results indicate that in addition to a Ca2+-free complex E.Van (KV = 0.4 microM), there must also be a Ca2+-enzyme-vanadate complex (K'V = 7 microM). This observation is confirmed by the difference between the kinetics of decay of activity on vanadate addition, and on addition of ATP to enzyme preincubated with vanadate and Ca2+, which requires two enzyme-vanadate complexes. ATP increases the apparent affinity of the enzyme for vanadate by inducing calcium release. Upper limits for the kinetic parameters for vanadate binding and dissociation are estimated.

摘要

利用ATP酶活性作为未复合酶的量度,研究了钒酸盐与肌浆网囊泡Ca2+-ATP酶的相互作用。结合/解离过程缓慢,因此可以用初始速率来研究平衡结合。结果表明,除了无Ca2+的复合物E.Van(KV = 0.4 microM)外,还必定存在一种Ca2+ - 酶 - 钒酸盐复合物(K'V = 7 microM)。添加钒酸盐时活性衰减的动力学,与向预先用钒酸盐和Ca2+预孵育的酶中添加ATP时活性衰减的动力学之间的差异证实了这一观察结果,这需要两种酶 - 钒酸盐复合物。ATP通过诱导钙释放增加了酶对钒酸盐的表观亲和力。估算了钒酸盐结合和解离动力学参数的上限。

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