Brzezinski P, Sundahl M, Adelroth P, Wilson M T, el-Agez B, Wittung P, Malmström B G
Department of Biochemistry and Biophysics, Göteborg University, Sweden.
Biophys Chem. 1995 Apr;54(2):191-7. doi: 10.1016/0301-4622(94)00128-7.
The quenching of the triplet state of Zn-cytochrome c in electrostatic complexes with cytochrome oxidase and its soluble CuA domain has been studied by laser flash photolysis. The triplet state of free Zn-cytochrome c decayed with a rate of about 200 s-1. With the oxidase, biphasic decay with rate constants of 2 x 10(5) and 2 x 10(3) s-1, respectively, was observed. At high ionic strength (I = 0.2) the decay was the same as with free Zn-cytochrome c. The quenching was also eliminated by reduction of the oxidase. The decay rate in the complex with the CuA domain was 4 x 10(4) s-1. The results are interpreted in terms of rapid electron transfer to CuA and a slower one to cytochrome a. No electron transfer products were detected, because the backward reaction is faster than the forward one. This can be explained by the high driving force (1.1 eV) for the forward electron transfer, taking the system into the inverted Marcus region. The distance in the electrostatic complex between cytochrome c and the electron acceptor, presumed to be CuA, is calculated to be 16 A.
通过激光闪光光解研究了锌 - 细胞色素c与细胞色素氧化酶及其可溶性CuA结构域形成的静电复合物中三重态的猝灭。游离锌 - 细胞色素c的三重态以约200 s⁻¹的速率衰减。与氧化酶作用时,观察到双相衰减,速率常数分别为2×10⁵和2×10³ s⁻¹。在高离子强度(I = 0.2)下,衰减与游离锌 - 细胞色素c相同。通过还原氧化酶也消除了猝灭。与CuA结构域形成的复合物中的衰减速率为4×10⁴ s⁻¹。结果表明电子快速转移到CuA,较慢地转移到细胞色素a。未检测到电子转移产物,因为逆向反应比正向反应快。这可以通过正向电子转移的高驱动力(1.1 eV)来解释,使系统进入倒转的马库斯区域。计算得出细胞色素c与假定为CuA的电子受体在静电复合物中的距离为16 Å。