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The role of FeS clusters for molybdenum cofactor biosynthesis and molybdoenzymes in bacteria

机译:FeS团簇在细菌中钼辅因子生物合成和钼酶的作用

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The biosynthesis of the molybdenum cofactor (Moco) has been intensively studied, in addition to its insertion into molybdoenzymes. In particular, a link between the assembly of molybdoenzymes and the biosynthesis of FeS clusters has been identified in the recent years: 1) the synthesis of the first intermediate in Moco biosynthesis requires an FeS-cluster containing protein, 2) the sulfurtransferase for the dithiolene group in Moco is also involved in the synthesis of FeS clusters, thiamin and thiolated tRNAs, 3) the addition of a sulfido-ligand to the molybdenum atom in the active site additionally involves a sulfurtransferase, and 4) most molybdoenzymes in bacteria require FeS clusters as redox active cofactors. In this review we will focus on the biosynthesis of the molybdenum cofactor in bacteria, its modification and insertion into molybdoenzymes, with an emphasis to its link to FeS cluster biosynthesis and sulfur transfer. (C) 2014 Elsevier B.V. All rights reserved.
机译:除了将其插入钼酶之外,还对钼辅因子(Moco)的生物合成进行了深入研究。特别是,近年来已发现钼酶的组装与FeS簇的生物合成之间的联系:1)Moco生物合成中的第一个中间体的合成需要包含蛋白质的FeS簇; 2)二硫代烯的硫转移酶Moco的一个小组也参与了FeS簇,硫胺素和硫醇化tRNA的合成; 3)在活性位点的钼原子上添加了硫键配体还涉及了硫转移酶; 4)细菌中的大多数钼酶需要FeS簇作为氧化还原活性辅助因子。在这篇综述中,我们将着重于细菌中钼辅因子的生物合成,其修饰和插入钼酶中,并着重强调其与FeS簇生物合成和硫转移的联系。 (C)2014 Elsevier B.V.保留所有权利。

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