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关于环匹阿尼酸对肌浆网或内质网Ca2+ -ATP酶的抑制机制

On the inhibition mechanism of sarcoplasmic or endoplasmic reticulum Ca2+-ATPases by cyclopiazonic acid.

作者信息

Plenge-Tellechea F, Soler F, Fernandez-Belda F

机构信息

Departamento de Bioquimica y Biologia Molecular A, Edificio de Veterinaria, Universidad de Murcia, Campus de Espinardo, 30071 Murcia, Spain.

出版信息

J Biol Chem. 1997 Jan 31;272(5):2794-800. doi: 10.1074/jbc.272.5.2794.

Abstract

Ca2+-ATPase inhibition by stoichiometric and substoichiometric concentrations of cyclopiazonic acid was studied in sarcoplasmic reticulum preparations from rabbit fast-twitch muscle. The apparent affinity of the nonphosphorylated enzyme for ATP showed a Kd of approximately 3 microM in the absence of cyclopiazonic acid and approximately 28 microM in the presence of the drug. Fractional saturation of the enzyme by cyclopiazonic acid was accompanied by the appearance of two ATP-binding populations (enzyme with and without drug) and a progressive increase in the half-maximal concentration for saturating the ATP-binding sites. Enzyme turnover in the presence of stoichiometric concentrations of cyclopiazonic acid displayed lower apparent affinity for ATP and lower maximal hydrolytic activity than in the absence of the drug. When cyclopiazonic acid is in the substoichiometric range, the observed kinetic parameters will correspond to the simultaneous contribution of two different reaction cycles sustained by the enzyme with and without drug. The inhibition could be elicited by adding ATP to allow the enzyme turnover when cyclopiazonic acid was preincubated with the enzyme in the presence of Ca2+. The onset of inhibition during enzyme cycling was observed over a period of seconds, revealing the existence of a low inhibition rate constant. It is concluded that cyclopiazonic acid decreases enzyme affinity for ATP in non-turnover conditions by approximately one order of magnitude. This allows enzyme cycling after drug binding, provided that a high ATP concentration is used. Cyclopiazonic acid and ATP do not compete for the same binding site.

摘要

在兔快肌肌浆网制剂中研究了化学计量和亚化学计量浓度的环匹阿尼酸对Ca2 + -ATP酶的抑制作用。在不存在环匹阿尼酸的情况下,非磷酸化酶对ATP的表观亲和力显示Kd约为3 microM,在存在该药物的情况下约为28 microM。环匹阿尼酸对酶的部分饱和伴随着两个ATP结合群体(有和没有药物的酶)的出现以及使ATP结合位点饱和的半数最大浓度的逐渐增加。与不存在药物时相比,在化学计量浓度的环匹阿尼酸存在下的酶周转对ATP的表观亲和力较低,最大水解活性也较低。当环匹阿尼酸处于亚化学计量范围内时,观察到的动力学参数将对应于由有和没有药物的酶维持的两个不同反应循环的同时贡献。当环匹阿尼酸在Ca2 +存在下与酶预孵育时,通过添加ATP以允许酶周转可以引发抑制作用。在酶循环过程中观察到抑制作用在几秒钟内开始,揭示了存在低抑制速率常数。结论是,环匹阿尼酸在非周转条件下使酶对ATP的亲和力降低约一个数量级。如果使用高ATP浓度,这允许药物结合后进行酶循环。环匹阿尼酸和ATP不竞争相同的结合位点。

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