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Critical roles of the CuB site in efficient proton pumping as revealed by crystal structures of mammalian cytochrome c oxidase catalytic intermediates

机译:Cub站点在高效质子泵浦的关键作用,哺乳动物细胞色素C氧化酶催化中间体透露

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Mammalian cytochrome c oxidase (CcO) reduces O2 to water in a bimetallic site including Fea3 and CuB giving intermediate molecules, termed A-, P-, F-, O-, E-, and R-forms. From the P-form on, each reaction step is driven by single-electron donations from cytochrome c coupled with the pumping of a single proton through the H-pathway, a proton-conducting pathway composed of a hydrogen-bond network and a water channel. The proton-gradient formed is utilized for ATP production by F-ATPase. For elucidation of the proton pumping mechanism, crystal structural determination of these intermediate forms is necessary. Here we report X-ray crystallographic analysis at ~1.8 ? resolution of fully reduced CcO crystals treated with O2 for three different time periods. Our disentanglement of intermediate forms from crystals that were composed of multiple forms determined that these three crystallographic data sets contained ~45% of the O-form structure, ~45% of the E-form structure, and ~20% of an oxymyoglobin-type structure consistent with the A-form, respectively. The O- and E-forms exhibit an unusually long CuB2+-OH? distance and CuB1+-H2O structure keeping Fea33+-OH? state, respectively, suggesting that the O- and E-forms have high electron affinities that cause the O→E and E→R transitions to be essentially irreversible and thus enable tightly coupled proton pumping. The water channel of the H-pathway is closed in the O- and E-forms and partially open in the R-form. These structures, together with those of the recently reported P- and F-forms, indicate that closure of the H-pathway water channel avoids back-leaking of protons for facilitating the effective proton pumping.
机译:哺乳动物细胞色素C氧化酶(CCO)将O 2减少到水中的水中,包括FEA3和幼崽,得到中间分子,称为A-,P-,F-,O-,E-和R形式。从P形式开启,每个反应步骤由来自细胞色素C的单电子捐赠驱动,通过H途径耦合通过H途径,由氢键网络和水通道组成的质子导电通路。形成的质子梯度用于通过F-ATP酶进行ATP生产。为了阐明质子泵送机构,需要这些中间形式的晶体结构测定。在这里,我们在〜1.8报告X射线晶体分析?用O 2处理的完全减少的CCO晶体的分辨率为三种不同的时间段。我们从多种形式组成的晶状中的中间形式的脱位确定了这三种晶体数据集含有〜45%的O形结构,〜45%的E形结构,〜20%的氧血杂蛋白型结构分别与A形的结构一致。 O-和电子表格表现出异常的长幼立方+ -OH?距离和CUB1 + -H2O结构保持FEA33 + -OH?分别暗示O-和电子形式具有高电子亲和力,使O→E和E→R过渡基本上是不可逆转的,因此能够紧密地耦合质子泵送。 H-途径的水通道在O-和电子形式中关闭,并在R形式中部分开口。这些结构与最近报道的P和F形式的结构表明,H-途径水通道的闭合避免了质子泄漏以促进有效的质子泵送。

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