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Controlled uncoupling and recoupling of proton pumping in cytochrome c oxidase

机译:细胞色素c氧化酶中质子泵的受控解偶联和偶联

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Cytochrome c oxidase (CcO) is the terminal enzyme of the respiratory chain and couples energetically the reduction of oxygen to water to proton pumping across the membrane. The results from previous studies showed that proton pumping can be uncoupled from the O_2-reduction reaction by replacement of one single residue, Asn-139 by Asp (N139D), located ≈ 30 A from the catalytic site, in the D-proton pathway. The uncoupling was correlated with an increase in the pK_a of an internal proton donor, Glu-286, from ≈ 9.4 to > 11. Here, we show that replacement of the acidic residue, Asp-132 by Asn in the N139D CcO (D132N N139D double-mutant CcO) results in restoration of the Glu-286 pK_a to the original value and recoupling of the proton pump during steady-state turnover. Furthermore, a kinetic investigation of the specific reaction steps in the D132N/N139D double-mutant CcO showed that proton pumping is sustained even if proton uptake from solution, through the D-pathway, is slowed. However, during single-turnover oxidation of the fully reduced CcO the P → F transition, which does not involve electron transfer to the catalytic site, was not coupled to proton pumping. The results provide insights into the mechanism of proton pumping by CcO and the structural elements involved in this process.
机译:细胞色素c氧化酶(CcO)是呼吸链的末端酶,与氧气还原成水而产生能量,从而将质子泵送穿过膜。先前研究的结果表明,通过在D质子途径中位于催化位点附近≈30 A的Asp(N139D)取代一个单一残基Asn-139,可以使质子泵浦与O_2还原反应脱钩。解偶联与内部质子供体Glu-286的pK_a从≈9.4增加到> 11相关。在这里,我们显示N139D CcO(D132N N139D)中的Asn取代了酸性残基Asp-132。 (双突变体CcO)可将Glu-286 pK_a恢复到原始值,并使质子泵在稳态周转期间重新耦合。此外,对D132N / N139D双突变体CcO中特定反应步骤的动力学研究表明,即使通过D途径从溶液中吸收质子,质子泵送也能持续。但是,在完全还原的CcO的单周转氧化过程中,P→F跃迁不涉及电子转移到催化位点,并未与质子泵浦耦合。结果提供了洞察CcO质子泵的机制和此过程中涉及的结构元素的见解。

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