Engstrom Gregory, Xiao Kunhong, Yu Chang-An, Yu Linda, Durham Bill, Millett Francis
Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, AR 72701, USA.
J Biol Chem. 2002 Aug 23;277(34):31072-8. doi: 10.1074/jbc.M202594200. Epub 2002 Jun 3.
Electron transfer from the Rieske iron-sulfur protein to cytochrome c(1) (cyt c(1)) in the Rhodobacter sphaeroides cytochrome bc(1) complex was studied using a ruthenium dimer complex, Ru(2)D. Laser flash photolysis of a solution containing reduced cyt bc(1), Ru(2)D, and a sacrificial electron acceptor results in oxidation of cyt c(1) within 1 micros, followed by electron transfer from the iron-sulfur center (2Fe-2S) to cyt c(1) with a rate constant of 80,000 s(-1). Experiments were carried out to evaluate whether the reaction was rate-limited by true electron transfer, proton gating, or conformational gating. The temperature dependence of the reaction yielded an enthalpy of activation of +17.6 kJ/mol, which is consistent with either rate-limiting conformational gating or electron transfer. The rate constant was nearly independent of pH over the range pH 7 to 9.5 where the redox potential of 2Fe-2S decreases significantly due to deprotonation of His-161. The rate constant was also not greatly affected by the Rieske iron-sulfur protein mutations Y156W, S154A, or S154A/Y156F, which decrease the redox potential of 2Fe-2S by 62, 109, and 159 mV, respectively. It is concluded that the electron transfer reaction from 2Fe-2S to cyt c(1) is controlled by conformational gating.
利用钌二聚体配合物Ru(2)D,研究了球形红杆菌细胞色素bc(1)复合物中从 Rieske 铁硫蛋白到细胞色素c(1)(cyt c(1))的电子转移。对含有还原型细胞色素bc(1)、Ru(2)D和牺牲电子受体的溶液进行激光闪光光解,结果显示在1微秒内细胞色素c(1)被氧化,随后铁硫中心(2Fe-2S)以80,000 s(-1)的速率常数向细胞色素c(1)进行电子转移。进行了实验以评估该反应是否受真正的电子转移、质子门控或构象门控限制。该反应的温度依赖性产生了+17.6 kJ/mol的活化焓,这与速率限制的构象门控或电子转移均一致。在pH 7至9.5范围内,速率常数几乎与pH无关,在此范围内,由于His-161的去质子化,2Fe-2S的氧化还原电位显著降低。速率常数也未受到 Rieske 铁硫蛋白突变Y156W、S154A或S154A/Y156F的显著影响,这些突变分别使2Fe-2S的氧化还原电位降低了62、109和159 mV。得出的结论是,从2Fe-2S到细胞色素c(1)的电子转移反应受构象门控控制。