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[2Fe-2S]簇N1a对大肠杆菌呼吸链复合体I电子传递和组装的意义

Significance of [2Fe-2S] Cluster N1a for Electron Transfer and Assembly of Escherichia coli Respiratory Complex I.

作者信息

Dörner Katerina, Vranas Marta, Schimpf Johannes, Straub Isabella R, Hoeser Jo, Friedrich Thorsten

机构信息

Institut für Biochemie, Albert-Ludwigs-Universität , Albertstraße 21, 79104 Freiburg, Germany.

Spemann Graduate School of Biology and Medicine (SGBM), Albert-Ludwigs-University , Freiburg, Germany.

出版信息

Biochemistry. 2017 Jun 6;56(22):2770-2778. doi: 10.1021/acs.biochem.6b01058. Epub 2017 May 25.

Abstract

NADH

ubiquinone oxidoreductase, respiratory complex I, couples electron transfer from NADH to ubiquinone with proton translocation across the membrane. NADH reduces a noncovalently bound FMN, and the electrons are transported further to the quinone reduction site by a 95 Å long chain of seven iron-sulfur (Fe-S) clusters. Binuclear Fe-S cluster N1a is not part of this long chain but is located within electron transfer distance on the opposite site of FMN. The relevance of N1a to the mechanism of complex I is not known. To elucidate its role, we individually substituted the cysteine residues coordinating N1a of Escherichia coli complex I by alanine and serine residues. The mutations led to a significant loss of the NADH oxidase activity of the mutant membranes, while the amount of the complex was only slightly diminished. N1a could not be detected by electron paramagnetic resonance spectroscopy, and unexpectedly, the content of binuclear cluster N1b located on a neighboring subunit was significantly decreased. Because of the lack of N1a and the partial loss of N1b, the variants did not survive detergent extraction from the mutant membranes. Only the C97A variant retained N1a and was purified by chromatographic steps. The preparation showed a slightly diminished NADH/ferricyanide oxidoreductase activity, while the NADH:decyl-ubiquinone oxidoreductase activity was not affected. N1a of this preparation showed unusual spectroscopic properties indicating a different ligation. We discuss whether N1a is involved in the physiological electron transfer reaction.

摘要

NADH

泛醌氧化还原酶,即呼吸链复合体I,可将电子从NADH传递至泛醌,并伴随着质子跨膜转运。NADH还原一个非共价结合的FMN,电子通过由七个铁硫(Fe-S)簇组成的95埃长链进一步传递至醌还原位点。双核Fe-S簇N1a并非该长链的一部分,而是位于FMN相对侧的电子传递距离内。N1a与复合体I机制的相关性尚不清楚。为阐明其作用,我们将大肠杆菌复合体I中配位N1a的半胱氨酸残基分别用丙氨酸和丝氨酸残基替代。这些突变导致突变体膜的NADH氧化酶活性显著丧失,而复合体的量仅略有减少。电子顺磁共振光谱无法检测到N1a,出乎意料的是,位于相邻亚基上的双核簇N1b的含量显著降低。由于缺乏N1a以及N1b部分缺失,这些变体无法从突变体膜中经去污剂提取存活下来。只有C97A变体保留了N1a,并通过色谱步骤进行了纯化。该制剂显示NADH/铁氰化物氧化还原酶活性略有降低,而NADH:癸基泛醌氧化还原酶活性未受影响。该制剂的N1a显示出异常的光谱性质,表明其配位情况不同。我们讨论了N1a是否参与生理电子传递反应。

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