Medical Research Council Mitochondrial Biology Unit, Wellcome Trust/MRC Building, Cambridge, CB2 0XY, UK.
Biochemistry. 2012 Jan 10;51(1):149-58. doi: 10.1021/bi201644x. Epub 2011 Dec 9.
In mitochondria, complex I (NADH:quinone oxidoreductase) couples electron transfer to proton translocation across an energy-transducing membrane. It contains a flavin mononucleotide to oxidize NADH, and an unusually long series of iron-sulfur (FeS) clusters that transfer the electrons to quinone. Understanding electron transfer in complex I requires spectroscopic and structural data to be combined to reveal the properties of individual clusters and of the ensemble. EPR studies on complex I from Bos taurus have established that five clusters (positions 1, 2, 3, 5, and 7 along the seven-cluster chain extending from the flavin) are (at least partially) reduced by NADH. The other three clusters, positions 4 and 6 plus a cluster on the other side of the flavin, are not observed in EPR spectra from the NADH-reduced enzyme: they may remain oxidized, have unusual or coupled spin states, or their EPR signals may be too fast relaxing. Here, we use Mössbauer spectroscopy on (57)Fe-labeled complex I from the mitochondria of Yarrowia lipolytica to show that the cluster ensemble is only partially reduced in the NADH-reduced enzyme. The three EPR-silent clusters are oxidized, and only the terminal 4Fe cluster (position 7) is fully reduced. Together with the EPR analyses, our results reveal an alternating profile of higher and lower potential clusters between the two active sites in complex I; they are not consistent with the consensus picture of a set of isopotential clusters. The implications for intramolecular electron transfer along the extended chain of cofactors in complex I are discussed.
在线粒体中,复合物 I(NADH:醌氧化还原酶)将电子传递与质子跨能量转换膜的转运偶联。它包含一个黄素单核苷酸来氧化 NADH,并具有一系列异常长的铁硫(FeS)簇,这些簇将电子传递给醌。理解复合物 I 中的电子传递需要将光谱和结构数据结合起来,以揭示单个簇和整体簇的性质。来自牛的复合物 I 的 EPR 研究已经确立,五个簇(沿着从黄素延伸的七个簇链的位置 1、2、3、5 和 7)至少部分被 NADH 还原。其他三个簇,位置 4 和 6 加上黄素另一侧的一个簇,在 NADH 还原酶的 EPR 光谱中观察不到:它们可能仍然被氧化,具有异常或偶联的自旋态,或者它们的 EPR 信号可能太快弛豫。在这里,我们使用来自酿酒酵母线粒体的(57)Fe 标记的复合物 I 的穆斯堡尔光谱表明,在 NADH 还原酶中,簇集合体仅部分还原。三个 EPR 沉默的簇被氧化,只有末端的 4Fe 簇(位置 7)完全还原。与 EPR 分析一起,我们的结果揭示了复合物 I 中两个活性位点之间具有更高和更低潜在簇的交替分布;它们与一组等电势簇的共识图像不一致。讨论了复合物 I 中延长的辅助因子链上分子内电子传递的影响。