Fernández-Velasco J G, Cocchi S, Neri M, Hauska G, Melandri B A
Istituto ed Orto Botanico, Università di Bologna, Italy.
J Bioenerg Biomembr. 1991 Apr;23(2):365-79. doi: 10.1007/BF00762228.
The cytochrome bc1 complexes from the nonphotosynthetic strain R126 of Rhodobacter capsulatus and from its revertant MR126 were purified. Between both preparations, no difference could be observed in the stoichiometries of the cytochromes, in their spectral properties, and in their midpoint redox potentials. Both also showed identical polypeptide patterns after electrophoresis on polyacrylamide gels in the presence of sodium dodecylsulfate. The ubiquinol: cytochrome c oxidoreductase activity was strongly inhibited in the complex from the mutant compared to the one from the revertant. So was the oxidant-induced extra reduction of cytochrome b. Both preparations, however, showed an antimycin-induced red shift of cytochrome b, as well as antimycin-sensitive reduction of cytochrome b by ubiquinol. In accordance with a preceding study of chromatophores (Robertson et al. (1986). J. Biol. Chem. 261, 584-591), it is concluded that the mutation affects specifically the ubiquinol oxidizing site, leaving the ubiquinol reducing site unchanged.
对荚膜红细菌非光合菌株R126及其回复突变体MR126的细胞色素bc1复合物进行了纯化。在这两种制备物之间,细胞色素的化学计量、光谱特性及其中点氧化还原电位均未观察到差异。在十二烷基硫酸钠存在下,在聚丙烯酰胺凝胶上进行电泳后,两者也显示出相同的多肽模式。与回复突变体的复合物相比,突变体复合物中的泛醇:细胞色素c氧化还原酶活性受到强烈抑制。细胞色素b的氧化剂诱导的额外还原也是如此。然而,两种制备物均显示出抗霉素诱导的细胞色素b红移,以及泛醇对抗霉素敏感的细胞色素b还原。根据之前对载色体的研究(罗伯逊等人(1986年)。《生物化学杂志》261,584 - 591),得出结论,该突变特异性地影响泛醇氧化位点,而泛醇还原位点保持不变。