Mogi Tatsushi
Department of Biomedical Chemistry, Graduate School of Medicine, The University of Tokyo, Hongo, Tokyo, Japan.
J Biochem. 2009 May;145(5):599-607. doi: 10.1093/jb/mvp015. Epub 2009 Jan 27.
Cytochromes bo and bd are terminal ubiquinol oxidases in the aerobic respiratory chain of Escherichia coli and generate proton motive force across the membrane. To probe roles of haem species in the oxidation of quinols, intramolecular electron transfer and the dioxygen reduction, we replaced b-haems with haem O by using the haem O synthase-overproducing system, which can accumulate haem O in cytoplasmic membranes. Characterizations of spectroscopic properties of cytochromes bo and bd isolated from BL21 (DE3)/pLysS and BL21 (DE3)/pLysS/pTTQ18-cyoE after 4 h of the aerobic induction of haem O synthase (CyoE) showed the specific incorporation of haem O into the low-spin haem-binding site in both oxidases. We found that the resultant haem oo- and obd-type oxidase severely reduced the ubiquinol-1 oxidase activity due to the perturbations of the quinol oxidation site. Our observations suggest that haem B is required at the low-spin haem site for the oxidation of quinols by cytochromes bo and bd.
细胞色素bo和bd是大肠杆菌有氧呼吸链中的末端泛醇氧化酶,可在膜上产生质子动力。为了探究血红素种类在泛醇氧化、分子内电子转移和双氧还原中的作用,我们通过使用血红素O合酶过量表达系统,将b-血红素替换为血红素O,该系统可在细胞质膜中积累血红素O。对从BL21(DE3)/pLysS和BL21(DE3)/pLysS/pTTQ18-cyoE中分离出的细胞色素bo和bd进行光谱特性表征,在有氧诱导血红素O合酶(CyoE)4小时后,结果表明血红素O特异性地掺入了两种氧化酶的低自旋血红素结合位点。我们发现,由于泛醇氧化位点受到干扰,产生的血红素oo型和obd型氧化酶严重降低了泛醇-1氧化酶活性。我们的观察结果表明,细胞色素bo和bd在低自旋血红素位点氧化泛醇需要血红素B。