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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Structure of bovine cytochrome c oxidase in the ligand-free reduced state at neutral pH
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Structure of bovine cytochrome c oxidase in the ligand-free reduced state at neutral pH

机译:中性pH下式无配态降低状态下牛细胞色素C氧化酶的结构

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摘要

Cytochrome c oxidase (CcO), the terminal oxidase in cellular respiration, couples proton pumping to O_2 reduction. Mammalian CcO resides in the inner mitochondrial membrane. Previously, a model of H-pathway proton pumping was proposed based on various CcO crystal structures. However, all previously determined structures were solved using crystals obtained at pH 5.7, which differs from the environmental pH of CcO in the inner membrane. The structures of fully oxidized and ligand-free reduced CcO at pH 7.3 have now been determined. Structural comparison between the oxidized and reduced states revealed that the structural alterations that occurred upon redox change at pH 5.7 in Asp51, the magnesium-containing cluster, haem groups and helix X, which provide important structural evidence for the H-pathway proton-pumping proposal, also occur at pH 7.3. These structural alterations were restricted to a local region of CcO; no domain movement was detected, nor were significant structural alterations detected in peripheral regions at either pH value. These observations indicate that the small and precise structural alterations that occur over the course of the reaction cycle are not affected by pH change, and that isolated CcO precisely performs proton pumping via the H-pathway over a wide pH range. Because the pH is not uniform across the molecular surface of CcO, the fact that the overall structure of CcO is not affected by pH changes ensures the high enzymatic efficiency of this protein in the mitochondria.
机译:细胞色素C氧化酶(CCO),末端氧化酶,细胞呼吸,耦合质子泵送到O_2的液体。哺乳动物CCO位于内部线粒体膜中。以前,基于各种CCO晶体结构提出了一种H-途径质子泵浦的模型。然而,使用以pH 5.7获得的晶体来解决所有先前确定的结构,其不同于内膜中CCO的环境pH。现在已经确定了pH7.3的完全氧化和无配体还原CCO的结构。氧化和减少状态之间的结构比较显示,在ASP51,含镁簇,血液组和螺旋X中氧化还原在pH5.7时发生的结构改变,为H型途径泵浦提案提供了重要的结构证据,也发生在pH 7.3。这些结构改变仅限于CCO的当地地区;没有检测到域移动,在pH值的外周区域中也不存在显着的结构改变。这些观察结果表明,在反应循环过程中发生的小和精确的结构改变不受pH变化的影响,并且该隔离的CCO通过H型宽的pH范围精确地进行质子泵送。因为在CCO的分子表面上的pH不均匀,所以CCO的整体结构不受pH变化的影响,因为CCO的整体结构变化可确保线粒体中该蛋白质的高酶促效率。

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    Picobiology Institute Graduate School of Life Science University of Hyogo 3-2-1 Koto Kamigori-cho Ako-kun Hyogo 678-1297 Japan;

    Picobiology Institute Graduate School of Life Science University of Hyogo 3-2-1 Koto Kamigori-cho Ako-kun Hyogo 678-1297 Japan;

    Picobiology Institute Graduate School of Life Science University of Hyogo 3-2-1 Koto Kamigori-cho Ako-kun Hyogo 678-1297 Japan;

    Picobiology Institute Graduate School of Life Science University of Hyogo 3-2-1 Koto Kamigori-cho Ako-kun Hyogo 678-1297 Japan;

    Picobiology Institute Graduate School of Life Science University of Hyogo 3-2-1 Koto Kamigori-cho Ako-kun Hyogo 678-1297 Japan;

    Institute for Protein Research Osaka University 3-2 Yamadaoka Suita Osaka 565-0871 Japan.;

    Picobiology Institute Graduate School of Life Science University of Hyogo 3-2-1 Koto Kamigori-cho Ako-kun Hyogo 678-1297 Japan;

    Picobiology Institute Graduate School of Life Science University of Hyogo 3-2-1 Koto Kamigori-cho Ako-kun Hyogo 678-1297 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 晶体学;
  • 关键词

    cytochrome c oxidase; membraneprotein complexes; X-ray structure; neutral pH;

    机译:细胞色素C氧化酶;膜普选蛋白复合物;X射线结构;中性pH值;

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