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Investigation of the mechanism of proton translocation by NADH:ubiquinone oxidoreductase (complex I) from bovine heart mitochondria: does the enzyme operate by a Q-cycle mechanism?

机译:牛心脏线粒体中NADH:泛醌氧化还原酶(复合体I)质子移位的机制研究:该酶是否通过Q循环机制起作用?

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摘要

Complex I (NADH:ubiquinone oxidoreductase) is the first enzyme of the membrane-bound electron transport chain in mitochondria. It conserves energy, from the reduction of ubiquinone by NADH, as a protonmotive force across the inner membrane, but the mechanism of energy transduction is not known. The structure of the hydrophilic arm of thermophilic complex I supports the idea that proton translocation is driven at (or close to) the point of quinone reduction, rather than at the point of NADH oxidation, with a chain of iron–sulfur clusters transferring electrons between the two active sites. Here, we describe experiments to determine whether complex I, isolated from bovine heart mitochondria, operates via a Q-cycle mechanism analogous to that observed in the cytochrome bc1 complex. No evidence for the ‘reductant-induced oxidation’ of ubiquinol could be detected; therefore no support for a Q-cycle mechanism was obtained. Unexpectedly, in the presence of NADH, complex I inhibited by either rotenone or piericidin A was found to catalyse the exchange of redox states between different quinone and quinol species, providing a possible route for future investigations into the mechanism of energy transduction.
机译:复合物I(NADH:泛醌氧化还原酶)是线粒体内膜结合电子传输链的第一个酶。它可以通过NADH还原泛醌来节省能量,作为跨内膜的质子动力,但是能量转导的机制尚不清楚。嗜热配合物的亲水臂的结构I支持以下观点:质子易位是在(或接近)醌还原点而不是在NADH氧化点处驱动的,链上的铁硫簇在电子之间转移电子。两个活动站点。在这里,我们描述了确定从牛心脏线粒体中分离出的复合物I是否通过类似于细胞色素bc1复合物中观察到的Q循环机制起作用的实验。没有证据表明泛醇的“还原剂诱导的氧化”。因此,没有获得对Q循环机制的支持。出乎意料的是,在存在NADH的情况下,发现被鱼藤酮或Piericidin A抑制的复合物I催化了不同醌和喹诺尔物质之间的氧化还原状态的交换,为将来的能量转换机理研究提供了可能的途径。

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