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牛心亚线粒体颗粒催化的NADH-醌还原酶反应中的H⁺/2e⁻化学计量关系。

-->H+/2e- stoichiometry in NADH-quinone reductase reactions catalyzed by bovine heart submitochondrial particles.

作者信息

Galkin A S, Grivennikova V G, Vinogradov A D

机构信息

Department of Biochemistry, School of Biology, Moscow State University, Russian Federation.

出版信息

FEBS Lett. 1999 May 21;451(2):157-61. doi: 10.1016/s0014-5793(99)00575-x.

Abstract

Tightly coupled bovine heart submitochondrial particles treated to activate complex I and to block ubiquinol oxidation were capable of rapid uncoupler-sensitive inside-directed proton translocation when a limited amount of NADH was oxidized by the exogenous ubiquinone homologue Q1. External alkalization, internal acidification and NADH oxidation were followed by the rapidly responding (t1/2 < or = 1 s) spectrophotometric technique. Quantitation of the initial rates of NADH oxidation and external H+ decrease resulted in a stoichiometric ratio of 4 H+ vectorially translocated per 1 NADH oxidized at pH 8.0. ADP-ribose, a competitive inhibitor of the NADH binding site decreased the rates of proton translocation and NADH oxidation without affecting -->H+/2e- stoichiometry. Rotenone, piericidin and thermal deactivation of complex I completely prevented NADH-induced proton translocation in the NADH-endogenous ubiquinone reductase reaction. NADH-exogenous Q1 reductase activity was only partially prevented by rotenone. The residual rotenone- (or piericidin-) insensitive NADH-exogenous Q1 reductase activity was found to be coupled with vectorial uncoupler-sensitive proton translocation showing the same -->H+/2e- stoichiometry of 4. It is concluded that the transfer of two electrons from NADH to the Q1-reactive intermediate located before the rotenone-sensitive step is coupled with translocation of 4 H+.

摘要

经处理以激活复合体I并阻断泛醇氧化的紧密偶联牛心亚线粒体颗粒,当外源泛醌同系物Q1氧化有限量的NADH时,能够快速进行对解偶联剂敏感的内向质子转运。通过快速响应(t1/2≤1秒)的分光光度技术监测外部碱化、内部酸化和NADH氧化。对NADH氧化的初始速率和外部H⁺减少量进行定量分析,结果显示在pH 8.0时,每氧化1个NADH,有4个H⁺进行向量转运。NADH结合位点的竞争性抑制剂ADP-核糖降低了质子转运速率和NADH氧化速率,但不影响H⁺/2e⁻化学计量比。鱼藤酮、杀粉蝶菌素以及复合体I的热失活完全阻止了NADH-内源性泛醌还原酶反应中NADH诱导的质子转运。鱼藤酮仅部分抑制NADH-外源Q1还原酶活性。发现残留的对鱼藤酮(或杀粉蝶菌素)不敏感的NADH-外源Q1还原酶活性与对解偶联剂敏感的向量质子转运偶联,显示相同的H⁺/2e⁻化学计量比为4。结论是,从NADH向位于鱼藤酮敏感步骤之前的Q1反应中间体转移两个电子与4个H⁺的转运偶联。

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