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大肠杆菌bo型泛醇氧化酶高亲和力醌结合位点(QH)处半醌自由基的稳定化。

Stabilization of a semiquinone radical at the high-affinity quinone-binding site (QH) of the Escherichia coli bo-type ubiquinol oxidase.

作者信息

Sato-Watanabe M, Itoh S, Mogi T, Matsuura K, Miyoshi H, Anraku Y

机构信息

Department of Biological Sciences, Graduate School of Science, University of Tokyo, Japan.

出版信息

FEBS Lett. 1995 Oct 30;374(2):265-9. doi: 10.1016/0014-5793(95)01125-x.

Abstract

Reaction of ubiquinone in the high-affinity quinone-binding site (QH) in bo-type ubiquinol oxidase from Escherichia coli was revealed by EPR and optical studies. In the QH site, ubiquinol was shown to be oxidized to ubisemiquinone and to ubiquinone, while no semiquinone signal was detected in the oxidase isolated from mutant cells that cannot synthesize ubiquinone. The QH site highly stabilized ubisemiquinone radical with a stability constant of 1-4 at pH 8.5 and the stability became lower at the lower pH. Midpoint potential of QH2/Q couple was -2 mV at pH 8.5 and showed -60 mV/pH dependence indicative of 2H+/2e- reaction. The Em was more negative than that of low-spin heme b above pH 7.0. We conclude that the QH mediates intramolecular electron transfer from ubiquinol in the low-affinity quinol oxidation site (QL) to low-spin heme b. Unique roles of the quinone-binding sites in the bacterial ubiquinol oxidase are discussed.

摘要

通过电子顺磁共振(EPR)和光学研究揭示了来自大肠杆菌的 bo 型泛醇氧化酶中高亲和力醌结合位点(QH)处泛醌的反应。在 QH 位点,泛醇被氧化为泛半醌和泛醌,而在从不能合成泛醌的突变细胞中分离出的氧化酶中未检测到半醌信号。QH 位点在 pH 8.5 时以 1 - 4 的稳定常数高度稳定泛半醌自由基,且在较低 pH 下稳定性降低。QH2/Q 电对在 pH 8.5 时的中点电位为 -2 mV,并显示出 -60 mV/pH 的依赖性,表明为 2H⁺/2e⁻反应。在 pH 7.0 以上,Em 比低自旋血红素 b 的更负。我们得出结论,QH 介导了从低亲和力泛醇氧化位点(QL)中的泛醇到低自旋血红素 b 的分子内电子转移。讨论了细菌泛醇氧化酶中醌结合位点的独特作用。

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