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The model structure of the copper-dependent ammonia monooxygenase

机译:铜依赖性氨单氧酶的模型结构

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摘要

Ammonia monooxygenase is a copper-dependent membrane-bound enzyme that catalyzes the first step of nitrification in ammonia-oxidizing bacteria to convert ammonia to hydroxylamine, through the reductive insertion of a dioxygen-derived O atom in an N-H bond. This reaction is analogous to that carried out by particulate methane monooxygenase, which catalyzes the conversion of methane to methanol. The enzymatic activity of ammonia monooxygenase must be modulated to reduce the release of nitrogen-based soil nutrients for crop production into the atmosphere or underground waters, a phenomenon known to significantly decrease the efficiency of primary production as well as increase air and water pollution. The structure of ammonia monooxygenase is not available, rendering the rational design of enzyme inhibitors impossible. This study describes a successful attempt to build a structural model of ammonia monooxygenase, and its accessory proteins AmoD and AmoE, fromNitrosomonas europaea, taking advantage of the high sequence similarity with particulate methane monooxygenase and the homologous PmoD protein, for which crystal structures are instead available. The results obtained not only provide the structural details of the proteins ternary and quaternary structures, but also suggest a location for the copper-containing active site for both ammonia and methane monooxygenases, as well as support a proposed structure of a CuA-analogue dinuclear copper site in AmoD and PmoD.
机译:氨单加氧酶是一种铜依赖性膜结合酶,通过在N-H键中还原插入氧衍生的O原子,催化氨氧化细菌硝化的第一步,将氨转化为羟胺。该反应类似于颗粒甲烷单加氧酶的反应,后者催化甲烷转化为甲醇。必须调节氨单加氧酶的酶活性,以减少作物生产所需的氮基土壤养分释放到大气或地下水中,这种现象会显著降低初级生产效率,并增加空气和水污染。氨单加氧酶的结构不可用,因此不可能合理设计酶抑制剂。这项研究描述了利用与颗粒甲烷单加氧酶和同源PmoD蛋白的高度序列相似性,成功地从欧洲亚硝基单胞菌中构建氨单加氧酶及其辅助蛋白AmoD和AmoE的结构模型,这些蛋白质的晶体结构可用。所获得的结果不仅提供了蛋白质三元和四元结构的结构细节,还表明了氨和甲烷单加氧酶的含铜活性位点的位置,并支持AmoD和PmoD中CuA类似物双核铜位点的拟议结构。

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