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首页> 外文期刊>Biological chemistry >The structure of Na+-translocating of NADH:ubiquinone oxidoreductase of Vibrio cholerae: implications on coupling between electron transfer and Na+ transport
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The structure of Na+-translocating of NADH:ubiquinone oxidoreductase of Vibrio cholerae: implications on coupling between electron transfer and Na+ transport

机译:NADH:霍乱弧菌的泛醌氧化还原酶的Na +转运结构:对电子转移和Na +转运之间耦合的影响

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The Na+-translocating NADH: ubiquinone oxidoreductase (Na+-NQR) of Vibrio cholerae is a respiratory complex that couples the exergonic oxidation of NADH to the transport of Na+ across the cytoplasmic membrane. It is composed of six different subunits, NqrA, NqrB, NqrC, NqrD, NqrE, and NqrF, which harbor FAD, FMN, riboflavin, quinone, and two FeS centers as redox co-factors. We recently determined the X-ray structure of the entire Na+-NQR complex at 3.5 resolution and complemented the analysis by high-resolution structures of NqrA, NqrC, and NqrF. The position of flavin and FeS co-factors both at the cytoplasmic and the periplasmic side revealed an electron transfer pathway from cytoplasmic subunit NqrF across the membrane to the periplasmic NqrC, and via NqrB back to the quinone reduction site on cytoplasmic NqrA. A so far unknown Fe site located in the midst of membrane-embedded subunits NqrD and NqrE shuttles the electrons over the membrane. Some distances observed between redox centers appear to be too large for effective electron transfer and require conformational changes that are most likely involved in Na+ transport. Based on the structure, we propose a mechanism where redox induced conformational changes critically couple electron transfer to Na+ translocation from the cytoplasm to the periplasm through a channel in subunit NqrB.
机译:霍乱弧菌的Na +易位NADH:泛醌氧化还原酶(Na + -NQR)是一种呼吸复合物,其将能动性的NADH氧化与Na +跨细胞质膜的运输耦合。它由六个不同的亚基NqrA,NqrB,NqrC,NqrD,NqrE和NqrF组成,它们包含FAD,FMN,核黄素,醌和两个FeS中心作为氧化还原辅助因子。我们最近以3.5分辨率确定了整个Na + -NQR复合物的X射线结构,并通过NqrA,NqrC和NqrF的高分辨率结构对分析进行了补充。黄素和FeS辅助因子在细胞质和周质侧的位置均显示出一个电子传递路径,从细胞质亚基NqrF跨膜到周质NqrC,并通过NqrB返回到细胞质NqrA上的醌还原位点。到目前为止,一个未知的Fe位点位于膜嵌入的亚基NqrD和NqrE的中间,使电子在膜上穿梭。氧化还原中心之间观察到的一些距离似乎对于有效的电子转移而言太大,并且需要构象变化,这很可能与Na +传输有关。基于该结构,我们提出了一种机制,其中氧化还原诱导的构象变化通过亚基NqrB的通道将电子转移与Na +易位从细胞质到周质临界耦合。

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