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首页> 外文期刊>Critical Reviews in Biochemistry and Molecular Biology >Architecture and active site of particulate methane monooxygenase
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Architecture and active site of particulate methane monooxygenase

机译:颗粒甲烷单加氧酶的结构和活性部位

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Particulate methane monooxygenase (pMMO) is an integral membrane metalloenzyme that oxidizes methane to methanol in methanotrophic bacteria, organisms that live on methane gas as their sole carbon source. Understanding pMMO function has important implications for bioremediation applications and for the development of new, environmentally friendly catalysts for the direct conversion of methane to methanol. Crystal structures of pMMOs from three different methanotrophs reveal a trimeric architecture, consisting of three copies each of the pmoB, pmoA, and pmoC subunits. There are three distinct metal centers in each protomer of the trimer, mononuclear and dinuclear copper sites in the periplasmic regions of pmoB and a mononuclear site within the membrane that can be occupied by copper or zinc. Various models for the pMMO active site have been proposed within these structural constraints, including dicopper, tricopper, and diiron centers. Biochemical and spectroscopic data on pMMO and recombinant soluble fragments, denoted spmoB proteins, indicate that the active site involves copper and is located at the site of the dicopper center in the pmoB subunit. Initial spectroscopic evidence for O 2 binding at this site has been obtained. Despite these findings, questions remain about the active site identity and nuclearity and will be the focus of future studies.
机译:微粒甲烷单加氧酶(pMMO)是一种不可或缺的膜金属酶,可将甲烷氧化菌中的甲烷氧化为甲醇,甲烷氧化菌是依靠甲烷气体作为唯一碳源的生物。理解pMMO功能对于生物修复应用以及将甲烷直接转化为甲醇的新型环保催化剂的开发具有重要意义。来自三种不同的甲烷营养生物的pMMO的晶体结构揭示了三聚体结构,该结构由pmoB,pmoA和pmoC亚基各三个拷贝组成。在三聚体的每个前体中存在三个不同的金属中心,在pmoB的周质区域中的单核和双核铜位点以及在膜内的一个单核位点,可以被铜或锌占据。在这些结构限制内,已经提出了用于pMMO活性位点的各种模型,包括dicopper,tricopper和diiron中心。关于pMMO和重组可溶性片段(表示为spmoB蛋白)的生化和光谱数据表明,活性位点涉及铜,位于pmoB亚基中双铜中心的位点。已经获得了该位置上O 2结合的初步光谱学证据。尽管有这些发现,但仍存在有关活动场所身份和核能的问题,这些问题将成为未来研究的重点。

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