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大肠杆菌细胞色素bo复合物氧化还原金属中心的分子结构。亚基I组氨酸突变氧化酶的光谱表征。

Molecular structure of redox metal centers of the cytochrome bo complex from Escherichia coli. Spectroscopic characterizations of the subunit I histidine mutant oxidases.

作者信息

Tsubaki M, Mogi T, Hori H, Hirota S, Ogura T, Kitagawa T, Anraku Y

机构信息

Department of Life Science, Faculty of Science, Himeji Institute of Technology, Hyogo, Japan.

出版信息

J Biol Chem. 1994 Dec 9;269(49):30861-8.

PMID:7983018
Abstract

A site-directed mutagenesis study on the conserved subunit I histidines of the cytochrome bo complex in Escherichia coli identified ligands of the low spin heme B and CuB centers; however, the assignment of the proximal ligand of the high spin heme O was ambiguous (Minagawa, J., Mogi, T., Gennis, R. B., and Anraku, Y. (1992) J. Biol. Chem. 267, 2096-2104). We have extended this work and characterized the metal centers in the purified histidine mutant oxidases by optical, EPR, and resonance Raman spectroscopies and by biochemical analysis. We found that the H284A and H333A oxidases contain two heme B molecules, which exhibit the gz = 2.99 low spin and cyanide-sensitive g perpendicular = 6 high-spin EPR signals, whereas the H419A oxidase contains only low spin heme B, which shows the gz component in a considerably higher magnetic field at g = 2.92. The CuB center was partially retained in the H284A oxidase but was almost completely lost in the H333A and H419A oxidases. Thus, we concluded that His419 is the proximal ligand of the high spin heme O and that His284 is located at the distal side of the high spin heme O. His284 plays an indispensable role in maintaining the structure of the Feo-CuB binuclear site suitable for the exogenous ligand bindings in the reduced state, since its substitution eliminated the CO binding activity. In addition, we found that His106 and His421 are in fact the axial ligands of the low spin heme B, although the H421A mutation perturbed the binuclear metal center seriously. Based upon experimental results with isotopic substitutions on iron in the oxidases, we assigned the Raman band at 208 cm-1 to the iron-histidine stretching mode (vFc(2+)-N(His)) of the wild-type ferrous cytochrome o, which was upshifted slightly by a loss of the CuB center in the H333A oxidase. A molecular structure of the metal centers and a possible mechanism of the electron transfer-coupled proton pumping in the cytochrome bo complex are proposed on the basis of our present findings.

摘要

一项针对大肠杆菌细胞色素 bo 复合物保守亚基 I 组氨酸的定点诱变研究确定了低自旋血红素 B 和 CuB 中心的配体;然而,高自旋血红素 O 的近端配体的归属并不明确(Minagawa, J., Mogi, T., Gennis, R. B., and Anraku, Y. (1992) J. Biol. Chem. 267, 2096 - 2104)。我们扩展了这项工作,并通过光学、电子顺磁共振(EPR)和共振拉曼光谱以及生化分析对纯化的组氨酸突变氧化酶中的金属中心进行了表征。我们发现 H284A 和 H333A 氧化酶含有两个血红素 B 分子,它们表现出 gz = 2.99 的低自旋和对氰化物敏感的 g 垂直 = 6 的高自旋 EPR 信号,而 H419A 氧化酶仅含有低自旋血红素 B,其在 g = 2.92 时在相当高的磁场中显示出 gz 分量。CuB 中心在 H284A 氧化酶中部分保留,但在 H333A 和 H419A 氧化酶中几乎完全丧失。因此,我们得出结论,His419 是高自旋血红素 O 的近端配体,His284 位于高自旋血红素 O 的远端。His284 在维持适合还原态外源配体结合的 Feo - CuB 双核位点结构方面起着不可或缺的作用,因为其取代消除了 CO 结合活性。此外,我们发现 His106 和 His421 实际上是低自旋血红素 B 的轴向配体,尽管 H421A 突变严重扰乱了双核金属中心。基于对氧化酶中铁进行同位素取代的实验结果,我们将 208 cm - 1 处的拉曼带归属于野生型亚铁细胞色素 o 的铁 - 组氨酸伸缩模式(vFc(2 + ) - N(His)),在 H333A 氧化酶中,由于 CuB 中心的丧失,该模式略有上移。基于我们目前的发现,提出了细胞色素 bo 复合物中金属中心的分子结构以及电子转移偶联质子泵浦的可能机制。

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