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球形红细菌的细胞色素aa3作为线粒体细胞色素c氧化酶的模型。纯化、动力学、质子泵浦及光谱分析。

Cytochrome aa3 of Rhodobacter sphaeroides as a model for mitochondrial cytochrome c oxidase. Purification, kinetics, proton pumping, and spectral analysis.

作者信息

Hosler J P, Fetter J, Tecklenburg M M, Espe M, Lerma C, Ferguson-Miller S

机构信息

Department of Biochemistry, Michigan State University, East Lansing 48824.

出版信息

J Biol Chem. 1992 Dec 5;267(34):24264-72.

PMID:1332949
Abstract

Aerobically grown Rhodobacter sphaeroides synthesizes a respiratory chain similar to that of eukaryotes. We describe the purification of the aa3-type cytochrome c oxidase of Rb. sphaeroides as a highly active (Vmax > or = 1800 s-1), three-subunit enzyme from isolated, washed cytoplasmic membranes by hydroxylapatite chromatography and anion exchange fast protein liquid chromatography. The purified oxidase exhibits biphasic kinetics of oxidation of mammalian cytochrome c, similar to mitochondrial oxidases, and pumps protons efficiently (H+/e- = 0.7) following reconstitution into phospholipid vesicles. A membrane-bound cytochrome c is associated with the aa3-type oxidase in situ, but is removed during purification. The EPR spectra of the Rb. sphaeroides enzyme suggest the presence of a strong hydrogen bond to one or both of the histidine ligands of heme a. In other respects, optical, EPR, and resonance Raman analyses of the metal centers and their protein environments demonstrate a close correspondence between the bacterial enzyme and the structurally more complex bovine cytochrome c oxidase. The results establish this bacterial oxidase as an excellent model system for the mammalian enzyme and provide the basis for site-directed mutational analysis of its energy transducing function.

摘要

需氧生长的球形红细菌合成的呼吸链与真核生物的相似。我们描述了球形红细菌aa3型细胞色素c氧化酶的纯化过程,该酶是一种高活性(Vmax≥1800 s-1)的三聚体酶,通过羟基磷灰石色谱和阴离子交换快速蛋白质液相色谱从分离并洗涤过的细胞质膜中获得。纯化后的氧化酶对哺乳动物细胞色素c的氧化表现出双相动力学,类似于线粒体氧化酶,并且在重组到磷脂囊泡中后能有效地泵出质子(H+/e- = 0.7)。一种膜结合细胞色素c在原位与aa3型氧化酶相关联,但在纯化过程中被去除。球形红细菌酶的电子顺磁共振(EPR)光谱表明,与血红素a的一个或两个组氨酸配体存在强氢键。在其他方面,对金属中心及其蛋白质环境的光学、EPR和共振拉曼分析表明,该细菌酶与结构更复杂的牛细胞色素c氧化酶之间存在密切对应关系。这些结果确立了这种细菌氧化酶作为哺乳动物酶的优秀模型系统,并为其能量转导功能的定点突变分析提供了基础。

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