Bogachev Alexander V, Bloch Dmitry A, Bertsova Yulia V, Verkhovsky Michael I
Department of Molecular Energetics of Microorganisms, A. N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, Moscow 119992, Russia.
Biochemistry. 2009 Jul 14;48(27):6299-304. doi: 10.1021/bi900525v.
Redox titration of the electronic spectra of the prosthetic groups of the Na(+)-translocating NADH:quinone oxidoreductase (Na(+)-NQR) from Vibrio harveyi at different pH values showed five redox transitions corresponding to the four flavin cofactors of the enzyme and one additional transition reflecting oxidoreduction of the [2Fe-2S] cluster. The pH dependence of the measured midpoint redox potentials showed that the two-electron reduction of the FAD located in the NqrF subunit was coupled with the uptake of only one H(+). The one-electron reduction of neutral semiquinone of riboflavin and the formation of anion flavosemiquinone from the oxidized FMN bound to the NqrB subunit were not coupled to any proton uptake. The two sequential one-electron reductions of the FMN residue bound to the NqrC subunit showed pH-independent formation of anion radical in the first step and the formation of fully reduced flavin coupled to the uptake of one H(+) in the second step. All four flavins stayed in the anionic form in the fully reduced enzyme. None of the six redox transitions in Na(+)-NQR showed dependence of its midpoint redox potential on the concentration of sodium ions. A model of the sequence of electron transfer steps in the enzyme is suggested.
在不同pH值下对哈维氏弧菌的Na(+)-转运NADH:醌氧化还原酶(Na(+)-NQR)辅基的电子光谱进行氧化还原滴定,结果显示有五个氧化还原转变,分别对应于该酶的四个黄素辅因子,还有一个额外的转变反映了[2Fe-2S]簇的氧化还原。所测中点氧化还原电位的pH依赖性表明,位于NqrF亚基中的FAD的双电子还原仅与摄取一个H(+)偶联。核黄素中性半醌的单电子还原以及与NqrB亚基结合的氧化型FMN形成阴离子黄素半醌均未与任何质子摄取偶联。与NqrC亚基结合的FMN残基的两个连续单电子还原显示,第一步中阴离子自由基的形成与pH无关,第二步中完全还原的黄素的形成与摄取一个H(+)偶联。在完全还原的酶中,所有四个黄素均以阴离子形式存在。Na(+)-NQR中的六个氧化还原转变均未显示其中点氧化还原电位对钠离子浓度的依赖性。提出了该酶中电子转移步骤顺序的模型。