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基于量子力学与分子力学联合计算的颗粒状甲烷单加氧酶双铜位点的可能过氧状态

Possible Peroxo State of the Dicopper Site of Particulate Methane Monooxygenase from Combined Quantum Mechanics and Molecular Mechanics Calculations.

作者信息

Itoyama Shuhei, Doitomi Kazuki, Kamachi Takashi, Shiota Yoshihito, Yoshizawa Kazunari

机构信息

Institute for Materials Chemistry and Engineering, Kyushu University , Fukuoka 819-0395, Japan.

Elements Strategy Initiative for Catalysts and Batteries, Kyoto University , Kyoto 615-8245, Japan.

出版信息

Inorg Chem. 2016 Mar 21;55(6):2771-5. doi: 10.1021/acs.inorgchem.5b02603. Epub 2016 Feb 26.

Abstract

Enzymatic methane hydroxylation is proposed to efficiently occur at the dinuclear copper site of particulate methane monooxygenase (pMMO), which is an integral membrane metalloenzyme in methanotrophic bacteria. The resting state and a possible peroxo state of the dicopper active site of pMMO are discussed by using combined quantum mechanics and molecular mechanics calculations on the basis of reported X-ray crystal structures of the resting state of pMMO by Rosenzweig and co-workers. The dicopper site has a unique structure, in which one copper is coordinated by two histidine imidazoles and another is chelated by a histidine imidazole and primary amine of an N-terminal histidine. The resting state of the dicopper site is assignable to the mixed-valent Cu(I)Cu(II) state from a computed Cu-Cu distance of 2.62 Å from calculations at the B3LYP-D/TZVP level of theory. A μ-η(2):η(2)-peroxo-Cu(II)2 structure similar to those of hemocyanin and tyrosinase is reasonably obtained by using the resting state structure and dioxygen. Computed Cu-Cu and O-O distances are 3.63 and 1.46 Å, respectively, in the open-shell singlet state. Structural features of the dicopper peroxo species of pMMO are compared with those of hemocyanin and tyrosinase and synthetic dicopper model compounds. Optical features of the μ-η(2):η(2)-peroxo-Cu(II)2 state are calculated and analyzed with TD-DFT calculations.

摘要

酶促甲烷羟基化反应被认为在颗粒状甲烷单加氧酶(pMMO)的双核铜位点高效发生,pMMO是甲烷营养细菌中的一种整合膜金属酶。基于Rosenzweig及其同事报道的pMMO静止态的X射线晶体结构,通过结合量子力学和分子力学计算,讨论了pMMO双铜活性位点的静止态和可能的过氧态。双铜位点具有独特的结构,其中一个铜由两个组氨酸咪唑配位,另一个由一个组氨酸咪唑和N端组氨酸的伯胺螯合。从理论B3LYP-D/TZVP水平计算得到的Cu-Cu距离为2.62 Å,双铜位点的静止态可归为混合价态的Cu(I)Cu(II)态。通过使用静止态结构和双氧,合理地得到了一种与血蓝蛋白和酪氨酸酶类似的μ-η(2):η(2)-过氧-Cu(II)2结构。在开壳单重态下,计算得到的Cu-Cu和O-O距离分别为3.63 Å和1.46 Å。将pMMO双铜过氧物种的结构特征与血蓝蛋白、酪氨酸酶以及合成双铜模型化合物的结构特征进行了比较。利用TD-DFT计算对μ-η(2):η(2)-过氧-Cu(II)2态的光学特征进行了计算和分析。

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