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Biological methane oxidation: Regulation, biochemistry, and active site structure of particulate methane monooxygenase

机译:甲烷生物氧化:甲烷单加氧酶的调控,生物化学和活性位点结构

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Particulate methane monooxygenase (pMMO) is a three-subunit integral membrane enzyme that catalyzes the oxidation of methane to methanol. Although pMMO is the predominant methane oxidation catalyst in nature, it has proved difficult to isolate, and most questions regarding its molecular structure, active site composition, chemical mechanism, and genetic regulation remain unanswered. Copper ions are believed to play a key role in both pMMO regulation and catalysis, and there is some evidence that the enzyme contains iron as well. A number of research groups have solubilized and purified or partially purified pMMO. These preparations have been characterized by biochemical and biophysical methods. In addition, aspects of methane monooxygenase gene regulation and copper accumulation in methanotrophs have been studied. This review summarizes for the first time the often controversial pMMO literature, focusing on recent progress and highlighting unresolved issues.
机译:颗粒甲烷单加氧酶(pMMO)是三亚基整体膜酶,催化甲烷氧化为甲醇。尽管pMMO是自然界中最主要的甲烷氧化催化剂,但事实证明它很难分离,关于其分子结构,活性位点组成,化学机理和遗传调控的大多数问题仍未得到解答。铜离子被认为在pMMO调节和催化中都起着关键作用,并且有证据表明该酶也含有铁。许多研究小组已经溶解并纯化或部分纯化了pMMO。这些制剂已通过生化和生物物理方法表征。另外,已经研究了甲烷单加氧酶基因调控和甲烷营养菌中铜积累的方面。这篇综述首次总结了经常引起争议的pMMO文献,重点是最近的进展并突出了未解决的问题。

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