van der Wal H N, van Grondelle R, Millett F, Knaff D B
Department of Biophysics, Huygens Laboratory of the State University, Leiden, The Netherlands.
Biochim Biophys Acta. 1987 Oct 7;893(3):490-8. doi: 10.1016/0005-2728(87)90100-9.
The oxidation of cytochrome c2 by the photooxidized reaction center bacteriochlorophyll, P+-870, in chromatophores of Rhodospirillum rubrum can be described using second-order kinetics at all ionic strengths. In a system consisting of isolated R. rubrum reaction centers and purified R. rubrum cytochrome c2, the oxidation of cytochrome c2 also follows second-order kinetics. In both cases, the reaction rates at low ionic strength are weakly dependent on the ionic strength. The data suggest that the cytochrome remains mobile at very low ionic strength, since the observed kinetics can be easily explained assuming no significant tight binding of cytochrome c2 to the reaction center. In a system consisting of equine cytochrome c and reaction centers of either R. rubrum or Rhodobacter sphaeroides, the cytochrome c oxidation rate depends more strongly on the ionic strength. The high reaction rates at low ionic strength suggest that a significant portion of the cytochrome is bound. Using equine cytochrome c derivatives modified at specific lysine residues, it was shown that both R. rubrum and Rb. sphaeroides reaction centers react with equine cytochrome c through its exposed heme edge.
在红螺菌的载色体中,光氧化的反应中心细菌叶绿素P⁺-870对细胞色素c₂的氧化反应,在所有离子强度下均可用二级动力学来描述。在一个由分离的红螺菌反应中心和纯化的红螺菌细胞色素c₂组成的体系中,细胞色素c₂的氧化反应同样遵循二级动力学。在这两种情况下,低离子强度下的反应速率对离子强度的依赖性较弱。数据表明,在极低离子强度下细胞色素仍保持可移动性,因为假设细胞色素c₂与反应中心不存在显著紧密结合,就很容易解释所观察到的动力学现象。在一个由马细胞色素c与红螺菌或球形红杆菌的反应中心组成的体系中,细胞色素c的氧化速率对离子强度的依赖性更强。低离子强度下的高反应速率表明,相当一部分细胞色素是结合态的。使用在特定赖氨酸残基处修饰的马细胞色素c衍生物,结果表明红螺菌和球形红杆菌的反应中心均通过其暴露的血红素边缘与马细胞色素c发生反应。