首页> 外文期刊>The Journal of biological chemistry >Mammalian Complex I Pumps 4 Protons per 2 Electrons at High and Physiological Proton Motive Force in Living Cells
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Mammalian Complex I Pumps 4 Protons per 2 Electrons at High and Physiological Proton Motive Force in Living Cells

机译:哺乳动物复合物I在活细胞的高和生理质子动力下每2个电子泵浦4个质子

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Mitochondrial complex I couples electron transfer between matrix NADH and inner-membrane ubiquinone to the pumping of protons against a proton motive force. The accepted proton pumping stoichiometry was 4 protons per 2 electrons transferred (4H+/2e?) but it has been suggested that stoichiometry may be 3H+/2e? based on the identification of only 3 proton pumping units in the crystal structure and a revision of the previous experimental data. Measurement of proton pumping stoichiometry is challenging because, even in isolated mitochondria, it is difficult to measure the proton motive force while simultaneously measuring the redox potentials of the NADH/NAD+ and ubiquinol/ubiquinone pools. Here we employ a new method to quantify the proton motive force in living cells from the redox poise of the bc1 complex measured using multiwavelength cell spectroscopy and show that the correct stoichiometry for complex I is 4H+/2e? in mouse and human cells at high and physiological proton motive force.
机译:线粒体复合物I将电子转移耦合到基质NADH和内膜泛醌之间的电子转移到泵送质子的质子动力。接受的质子泵化学计量是每2个电子转移的4个质子(4H + / 2E?),但已经提出了化学计量可以是3H + / 2E?基于识别晶体结构中仅3个质子泵送单元和先前的实验数据的修订。质子泵浦化学计量的测量是挑战性的,因为即使在分离的线粒体中,也难以测量质子动力,同时测量NADH / NAD +和ubiquinone池的氧化还原电位。在这里,我们采用了一种新方法来量化使用多波长细胞光谱测量的BC1复合物的氧化还原电池中的质子动力,并表明复合物I的正确化学计量是4H + / 2E?在高和生理质子动力的小鼠和人体细胞中。

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