Fato R, Castelluccio C, Armaroli S, Contarini A, Parenti Castelli G, Lenaz G
Department of Biology, University of Bologna, Italy.
Biochem Biophys Res Commun. 1988 Sep 30;155(3):1145-53. doi: 10.1016/s0006-291x(88)81260-9.
The steady-state kinetics of ubiquinol cytochrome c reductase was investigated in submitochondrial particles using ubiquinol-1 as electron donor in media of increasing viscosities obtained by water-polyethylene glycol mixtures. The minimum association rate constant, kmin = kcat/km, for cytochrome c was strongly viscosity dependent, whereas kmin for ubiquinol-1 was only weakly affected by viscosity. It is concluded that the interaction of cytochrome c with the membranous reductase is largely under diffusion control, whereas the oxidation of ubiquinol by the enzyme is not significantly controlled by diffusion in either the aqueous medium or the membrane. The results are compatible with the presence of a diffusion limited step in cytochrome c but not in ubiquinone in mitochondrial electron transfer.
利用泛醇 -1作为电子供体,在由水 - 聚乙二醇混合物得到的粘度不断增加的介质中,对亚线粒体颗粒中的泛醇 - 细胞色素c还原酶的稳态动力学进行了研究。细胞色素c的最小缔合速率常数kmin = kcat/km强烈依赖于粘度,而泛醇 -1的kmin仅受到粘度的微弱影响。得出的结论是,细胞色素c与膜状还原酶的相互作用在很大程度上受扩散控制,而该酶对泛醇的氧化在水相介质或膜中均未受到扩散的显著控制。这些结果与线粒体电子传递中细胞色素c存在扩散限制步骤而泛醌不存在扩散限制步骤相一致。