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细菌多组分单加氧酶及相关双铁蛋白中结构与功能的关联

Correlating structure with function in bacterial multicomponent monooxygenases and related diiron proteins.

作者信息

Sazinsky Matthew H, Lippard Stephen J

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Acc Chem Res. 2006 Aug;39(8):558-66. doi: 10.1021/ar030204v.

Abstract

Bacterial multicomponent monooxygenases (BMMs) catalyze the O2-dependent hydroxylation of hydrocarbons at a carboxylate-bridged diiron center similar to those that occur in a variety of dimetallic oxygen-utilizing enzymes. BMMs have found numerous biodegradation and biocatalytic applications. Recent investigations have begun to reveal how BMMs perform their C-H bond activation chemistry and why these enzymes may be mechanistically different from other related diiron proteins. The structures of the BMM component proteins and of complexes between them provide insights into the tuning of the dinuclear iron center and the enzyme mechanism. Selected findings are compared and contrasted with the properties of other carboxylate-bridged diiron proteins, revealing common structural and functional themes.

摘要

细菌多组分单加氧酶(BMMs)在一个羧酸盐桥联的双铁中心催化烃类的氧依赖型羟基化反应,该中心类似于多种利用氧的双金属酶中的中心。BMMs已在众多生物降解和生物催化应用中得到应用。最近的研究已开始揭示BMMs如何进行其C-H键活化化学过程,以及为何这些酶在机制上可能与其他相关双铁蛋白不同。BMM组分蛋白及其之间复合物的结构为双核铁中心的调控和酶的机制提供了见解。将选定的研究结果与其他羧酸盐桥联双铁蛋白的特性进行比较和对比,揭示了共同的结构和功能主题。

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