Venturoli G, Zannoni D
Institute of Botany, Department of Biology, University of Bologna, Italy.
Eur J Biochem. 1988 Dec 15;178(2):503-9. doi: 10.1111/j.1432-1033.1988.tb14476.x.
Oxidation-reduction thermodynamic equilibria involving the quinone-acceptor complex have been examined in whole-membrane fragments from Chloroflexus aurantiacus. The primary quinone acceptor was titrated by monitoring the amount of cytochrome c554 photooxidized by a flash of light as a function of the redox potential. In contrast to previous data obtained in purified plasma membranes, in which the primary quinone acceptor exhibited a midpoint potential equal to -50 mV at pH 8.2, in whole-membrane fragments it titrated at -210 mV (pH 8.0), with a pH dependence of -60 mV/pH up to a pK value of 9.3. o-Phenanthroline, an inhibitor of electron transfer from the primary to the secondary quinone acceptor, shifted the Em/pH curve of the primary acceptor to higher redox potentials. The midpoint potential of the secondary quinone acceptor and its dependence on pH has been determined by comparing the kinetics of the charge recombination processes within the reaction center complex in the presence and in the absence of o-phenanthroline. It is concluded that both the primary and the secondary quinone acceptors interact with a proton, with pK values of 9.3 and of approximately 10.2 respectively. At physiological pH the electron appears to be stabilized on the secondary with respect to the primary quinone acceptor by approximately 60 meV.
已对橙色绿屈挠菌全膜片段中涉及醌 - 受体复合物的氧化还原热力学平衡进行了研究。通过监测光照闪光光氧化细胞色素c554的量作为氧化还原电位的函数来滴定初级醌受体。与之前在纯化质膜中获得的数据不同,在纯化质膜中初级醌受体在pH 8.2时的中点电位等于 -50 mV,而在全膜片段中其滴定电位为 -210 mV(pH 8.0),在pK值为9.3之前pH依赖性为 -60 mV/pH。邻菲罗啉是一种从初级醌受体向次级醌受体电子转移的抑制剂,它将初级受体的Em/pH曲线移向更高的氧化还原电位。通过比较在有和没有邻菲罗啉存在的情况下反应中心复合物内电荷复合过程的动力学,确定了次级醌受体的中点电位及其对pH的依赖性。得出的结论是,初级和次级醌受体都与一个质子相互作用,其pK值分别为9.3和约10.2。在生理pH下,相对于初级醌受体,电子似乎在次级醌受体上稳定了约60 meV。