Sato-Watanabe M, Mogi T, Ogura T, Kitagawa T, Miyoshi H, Iwamura H, Anraku Y
Department of Plant Sciences, Graduate School of Science, University of Tokyo, Japan.
J Biol Chem. 1994 Nov 18;269(46):28908-12.
The cytochrome bo complex is a heme BO-type heme-copper quinol oxidase in the aerobic respiratory chain of Escherichia coli and functions as an electron transfer-linked proton pump. To study the protein-mediated electron transfer from substrates to metal centers, we carried out quantitative and qualitative analyses of a bound quinone in the purified oxidase and found that it has a novel high affinity ubiquinone-binding site distinct from the quinol oxidation site. Enzymatic and spectroscopic studies suggest that the quinone-binding site is located close to both the quinol oxidation site in subunit II and low-spin heme B in subunit I. The quinone-binding site of a bound ubiquinone-free oxidase was reconstituted with the potent quinol oxidation site inhibitor 2,6-dichloro-4-nitrophenol, which decreased the Vmax value of the ubiquinol-1 oxidase activity to one-fourth of the control activity. These results indicate that the quinone-binding site is essential for the catalytic functions of the cytochrome bo complex and mediates electron transfer from the quinol oxidation site to the low-spin heme.
细胞色素bo复合物是大肠杆菌有氧呼吸链中的一种血红素BO型血红素-铜醌氧化酶,作为一种与电子传递相关的质子泵发挥作用。为了研究蛋白质介导的从底物到金属中心的电子传递,我们对纯化的氧化酶中结合的醌进行了定量和定性分析,发现它有一个与醌醇氧化位点不同的新型高亲和力泛醌结合位点。酶学和光谱学研究表明,醌结合位点位于亚基II中的醌醇氧化位点和亚基I中的低自旋血红素B附近。用强效的醌醇氧化位点抑制剂2,6-二氯-4-硝基苯酚重建了无结合泛醌氧化酶的醌结合位点,这使泛醌-1氧化酶活性的Vmax值降至对照活性的四分之一。这些结果表明,醌结合位点对于细胞色素bo复合物的催化功能至关重要,并介导从醌醇氧化位点到低自旋血红素的电子传递。