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Interconversions of P and F intermediates of cytochrome c oxidase from Paracoccus denitrificans

机译:反硝化副球菌细胞色素C氧化酶的P和F中间体的相互转化

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摘要

Cytochrome c oxidase (CcO) is the terminal enzyme of the respiratory chain. This redox-driven proton pump catalyzes the four-electron reduction of molecular oxygen to water, one of the most fundamental processes in biology. Elucidation of the intermediate structures in the catalytic cycle is crucial for understanding both the mechanism of oxygen reduction and its coupling to proton pumping. Using CcO from Paracoccus denitrificans, we demonstrate that the artificial >F state, classically generated by reaction with an excess of hydrogen peroxide, can be converted into a new >P state (in contradiction to the conventional direction of the catalytic cycle) by addition of ammonia at pH 9. We suggest that ammonia coordinates directly to CuB in the binuclear active center in this >P state and discuss the chemical structures of both oxoferryl intermediates >F and >P. Our results are compatible with a superoxide bound to CuB in the >F state.
机译:细胞色素c氧化酶(CcO)是呼吸链的末端酶。氧化还原驱动的质子泵催化分子氧向水中的四电子还原,这是生物学中最基本的过程之一。阐明催化循环中的中间结构对于理解氧还原的机理及其与质子泵的耦合至关重要。使用来自反硝化副球菌的CcO,我们证明了通常通过与过量的过氧化氢反应生成的人工> F 状态可以转化为新的> P 状态(相反通过在pH值为9的氨中加入到传统的催化循环方向。我们建议氨在此> P 状态下直接与双核活性中心的CuB配位,并讨论两种草酰氧中间体的化学结构> F 和> P 。我们的结果与以> F 状态结合到CuB的超氧化物兼容。

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