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首页> 外文期刊>Science >STRUCTURES OF METAL SITES OF OXIDIZED BOVINE HEART CYTOCHROME C OXIDASE AT 2.8 ANGSTROM
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STRUCTURES OF METAL SITES OF OXIDIZED BOVINE HEART CYTOCHROME C OXIDASE AT 2.8 ANGSTROM

机译:2.8牛氧化的牛心型细胞色素C氧化酶金属位点的结构

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The high resolution three-dimensional x-ray structure of the metal sites of bovine heart cytochrome c oxidase is reported. Cytochrome c oxidase is the largest membrane protein yet crystallized and analyzed at atomic resolution. Electron density distribution of the oxidized bovine cytochrome c oxidase at 2.8 Angstrom resolution indicates a dinuclear copper center with an unexpected structure similar to a [2Fe-2S]-type iron-sulfur center. Previously predicted zinc and magnesium sites have been located, the former bound by a nuclear encoded subunit on the matrix side of the membrane, and the latter situated between heme a(3) and Cu-A, at the interface of subunits I and II. The O-2 binding site contains heme a(3) iron and copper atoms (Cu-B) with an interatomic distance of 4.5 Angstrom; there is no detectable bridging ligand between iron and copper atoms in spite of a strong antiferromagnetic coupling between them. A hydrogen bond is present between a hydroxyl group of the hydroxyfarnesylethyl side chain of heme a(3) and an OH of a tyrosine. The tyrosine phenol plane is immediately adjacent and perpendicular to an imidazole group bonded to Cu-B, suggesting a possible role in intramolecular electron transfer or conformational control, the latter of which could induce the redox-coupled proton pumping. A phenyl group located halfway between a pyrrole plane of the heme a(3) and an imidazole plane liganded to the other home (heme a) could also influence electron transfer or conformational control.
机译:据报道,牛心脏细胞色素C氧化酶的金属位点具有高分辨率的三维X射线结构。细胞色素C氧化酶是迄今为止结晶和原子分辨率分析的最大膜蛋白。氧化的牛细胞色素c氧化酶在2.8埃分辨率下的电子密度分布表明,双核铜中心的结构与[2Fe-2S]型铁硫中心相似,具有出乎意料的结构。已经找到了先前预测的锌和镁位点,前者在膜的基质侧上被核编码的亚基束缚,后者位于亚基I和II的界面上的血红素a(3)和Cu-A之间。 O-2结合位点包含血红素a(3)铁和铜原子(Cu-B),原子间距离为4.5埃;尽管铁和铜原子之间存在强反铁磁耦合,但铁和铜原子之间没有可检测的桥联配体。血红素a(3)的羟基法呢基乙基侧链的羟基与酪氨酸的OH之间存在氢键。酪氨酸苯酚平面紧邻并垂直于键合至Cu-B的咪唑基团,表明在分子内电子转移或构象控制中可能发挥作用,后者可能引起氧化还原偶联的质子泵浦。位于血红素a(3)的吡咯平面和与另一位配体(血红素a)配位的咪唑平面之间的中间位置的苯基也可能影响电子转移或构象控制。

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