Diggens R J, Ragan C I
Biochem J. 1982 Feb 15;202(2):527-34. doi: 10.1042/bj2020527.
Ubiquinol-cytochrome c reductase (Complex III), cytochrome c and cytochrome c oxidase can be combined to reconstitute antimycin-sensitive ubiquinol oxidase activity. In 25 mM-acetate/Tris, pH 7.8, cytochrome c binds at high-affinity sites (KD = 0.1 microM) and low-affinity sites (KD approx. 10 microM). Quinol oxidase activity is 50% of maximal activity when cytochrome c is bound to only 25% of the high affinity sites. The other 50% of activity seems to be due to cytochrome c bound at low-affinity sites. Reconstitution in the presence of soya-bean phospholipids prevents aggregation of cytochrome c oxidase and gives rise to much higher rates of quinol oxidase. The cytochrome c dependence was unaltered. Antimycin curves have the same shape regardless of lipid/protein ratio, Complex III/cytochrome c oxidase ratio or cytochrome c concentration. Proposals on the nature of the interaction between Complex III, cytochrome c and cytochrome c oxidase are considered in the light of these results.
泛醇 - 细胞色素c还原酶(复合体III)、细胞色素c和细胞色素c氧化酶可以结合起来,以重建对抗霉素敏感的泛醇氧化酶活性。在25 mM - 醋酸盐/ Tris缓冲液(pH 7.8)中,细胞色素c结合于高亲和力位点(KD = 0.1 microM)和低亲和力位点(KD约为10 microM)。当细胞色素c仅结合到25%的高亲和力位点时,喹醇氧化酶活性为最大活性的50%。另外50%的活性似乎是由于细胞色素c结合于低亲和力位点。在大豆磷脂存在的情况下进行重组可防止细胞色素c氧化酶聚集,并产生更高的喹醇氧化酶速率。对细胞色素c的依赖性未改变。无论脂质/蛋白质比例、复合体III /细胞色素c氧化酶比例或细胞色素c浓度如何,抗霉素曲线的形状都相同。根据这些结果,对复合体III、细胞色素c和细胞色素c氧化酶之间相互作用的性质提出了一些建议。