Puustinen A, Finel M, Haltia T, Gennis R B, Wikström M
Department of Medical Chemistry, University of Helsinki, Finland.
Biochemistry. 1991 Apr 23;30(16):3936-42. doi: 10.1021/bi00230a019.
Proton translocation coupled to oxidation of ubiquinol by O2 was studied in spheroplasts of two mutant strains of Escherichia coli, one of which expresses cytochrome d, but not cytochrome bo, and the other expressing only the latter. O2 pulse experiments revealed that cytochrome d catalyzes separation of the protons and electrons of ubiquinol oxidation but is not a proton pump. In contrast, cytochrome bo functions as a proton pump in addition to separating the charges of quinol oxidation. E. coli membranes and isolated cytochrome bo lack the CuA center typical of cytochrome c oxidase, and the isolated enzyme contains only 1Cu/2Fe. Optical spectra indicate that high-spin heme o contributes less than 10% to the reduced minus oxidized 560-nm band of the enzyme. Pyridine hemochrome spectra suggest that the hemes of cytochrome bo are not protohemes. Proteoliposomes with cytochrome bo exhibited good respiratory control, but H+/e- during quinol oxidation was only 0.3-0.7. This was attributed to an "inside out" orientation of a significant fraction of the enzyme. Possible metabolic benefits of expressing both cytochromes bo and d in E. coli are discussed.
在两种大肠杆菌突变株的原生质体中研究了与泛醇被氧气氧化相偶联的质子转运,其中一种表达细胞色素d,但不表达细胞色素bo,另一种仅表达后者。氧气脉冲实验表明,细胞色素d催化泛醇氧化过程中质子和电子的分离,但不是质子泵。相比之下,细胞色素bo除了分离对苯二酚氧化的电荷外,还起着质子泵的作用。大肠杆菌膜和分离出的细胞色素bo缺乏细胞色素c氧化酶典型的CuA中心,且分离出的酶仅含有1Cu/2Fe。光谱表明,高自旋血红素o对该酶560nm还原态减去氧化态谱带的贡献小于10%。吡啶血色素光谱表明,细胞色素bo的血红素不是原血红素。含有细胞色素bo的蛋白脂质体表现出良好的呼吸控制,但对苯二酚氧化过程中的H+/e-仅为0.3 - 0.7。这归因于该酶相当一部分的“内外翻转”取向。讨论了在大肠杆菌中同时表达细胞色素bo和d可能的代谢益处。