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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Proton translocation by cytochrome c oxidase in different phases of the catalytic cycle
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Proton translocation by cytochrome c oxidase in different phases of the catalytic cycle

机译:在催化循环的不同阶段通过细胞色素C氧化酶进行质子移位

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Since mitochondrial cytochrome c oxidase was found to be a redox-linked proton pump, most enzymes of the haem-copper oxidase family have been shown to share this function. Here, the most recent knowledge of how the individual reactions of the enzyme's catalytic cycle are coupled to proton translocation is reviewed. Two protons each are pumped during the oxidative and reductive halves of the cycle, respectively. An apparent controversy that concerns proton translocation during the reductive half is resolved. If the oxidised enzyme is allowed to relax in the absence of reductant, the binuclear haem-copper centre attains a state that lies outside the main catalytic cycle. Reduction of this form of the enzyme is not linked to proton translocation, but is necessary for a return to the main cycle. This phenomenon might be related to the previously described "pulsed" vs. "resting" and "fast" vs. "slow" forms of haem-copper oxidases.
机译:由于发现线粒体细胞色素C氧化酶是一种氧化还原连接的质子泵,因此血红铜氧化酶家族的大多数酶已被证明具有这种功能。在此,回顾了有关酶催化循环的各个反应如何与质子易位耦合的最新知识。在循环的一半氧化和还原期间,分别泵送两个质子。解决了有关还原性一半期间质子易位的一个明显争议。如果在没有还原剂的情况下使氧化酶松弛,则双核血红铜中心将处于主催化循环之外的状态。减少这种形式的酶与质子易位无关,但是对于返回主循环是必需的。该现象可能与先前描述的血红铜氧化酶的“脉冲”形式与“静止”形式以及“快速”形式与“缓慢”形式有关。

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