Department of Chemistry, University of Cyprus, P. O. Box 20537, 1678 Nicosia, Cyprus.
J Biol Chem. 2013 Jul 12;288(28):20261-6. doi: 10.1074/jbc.M113.468488. Epub 2013 May 30.
Identification of the intermediates and determination of their structures in the reduction of dioxygen to water by cytochrome c oxidase (CcO) are particularly important to understanding both O2 activation and proton pumping by the enzyme. In this work, we report the products of the rapid reaction of O2 with the mixed valence form (CuA(2+), heme a(3+), heme a3(2+)-CuB(1+)) of the enzyme. The resonance Raman results show the formation of two ferryl-oxo species with characteristic Fe(IV)=O stretching modes at 790 and 804 cm(-1) at the peroxy oxidation level (PM). Density functional theory calculations show that the protein environment of the proximal H-bonded His-411 determines the strength of the distal Fe(IV)=O bond. In contrast to previous proposals, the PM intermediate is also formed in the reaction of Y167F with O2. These results suggest that in the fully reduced enzyme, the proton pumping ν(Fe(IV)=O) = 804 cm(-1) to ν(Fe(IV)=O) = 790 cm(-1) transition (P→F, where P is peroxy and F is ferryl) is triggered not only by electron transfer from heme a to heme a3 but also by the formation of the H-bonded form of the His-411-Fe(IV)=O conformer in the proximal site of heme a3. The implications of these results with respect to the role of an O=Fe(IV)-His-411-H-bonded form to the ring A propionate of heme a3-Asp-399-H2O site and, thus, to the exit/output proton channel (H2O) pool during the proton pumping P→F transition are discussed. We propose that the environment proximal to the heme a3 controls the spectroscopic properties of the ferryl intermediates in cytochrome oxidases.
鉴定细胞色素 c 氧化酶(CcO)还原氧为水过程中的中间产物及其结构对于理解 O2 活化和质子泵由该酶至关重要。在这项工作中,我们报告了 O2 与酶的混合价形式(CuA(2+)、heme a(3+)、heme a3(2+)-CuB(1+))快速反应的产物。共振拉曼结果表明,在过氧氧化水平(PM)下形成了两种具有特征 Fe(IV)=O 伸缩模式的 ferryl-oxo 物种,其模式在 790 和 804 cm(-1)。密度泛函理论计算表明,近端氢键结合的 His-411 的蛋白质环境决定了远端 Fe(IV)=O 键的强度。与之前的提议相反,Y167F 与 O2 的反应也形成了 PM 中间体。这些结果表明,在完全还原的酶中,质子泵 ν(Fe(IV)=O) = 804 cm(-1) 到 ν(Fe(IV)=O) = 790 cm(-1) 的转变(P→F,其中 P 是过氧,F 是 ferryl)不仅由 heme a 向 heme a3 的电子转移触发,还由 heme a3 近端位点 His-411-Fe(IV)=O 构象体形成氢键触发。这些结果对于 O=Fe(IV)-His-411-氢键形式在 heme a3-Asp-399-H2O 位的环 A 丙酸酯和质子泵 P→F 转变过程中的质子输出通道(H2O)池的作用的影响进行了讨论。我们提出,heme a3 近端环境控制细胞色素氧化酶中 ferryl 中间体的光谱性质。