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首页> 外文期刊>Angewandte Chemie >Structure of the Sulfoxide Synthase EgtB from the Ergothioneine Biosynthetic Pathway
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Structure of the Sulfoxide Synthase EgtB from the Ergothioneine Biosynthetic Pathway

机译:麦角硫氨酸生物合成途径的亚砜合酶EgtB的结构。

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摘要

The non-heme iron enzyme EgtB catalyzes O-2-dependent CS bond formation between -glutamyl cysteine and N--trimethyl histidine as the central step in ergothioneine biosynthesis. Both, the catalytic activity and the architecture of EgtB are distinct from known sulfur transferases or thiol dioxygenases. The crystal structure of EgtB from Mycobacterium thermoresistibile in complex with -glutamyl cysteine and N--trimethyl histidine reveals that the two substrates and three histidine residues serve as ligands in an octahedral iron binding site. This active site geometry is consistent with a catalytic mechanism in which CS bond formation is initiated by an iron(III)-complexed thiyl radical attacking the imidazole ring of N--trimethyl histidine.
机译:非血红素铁酶EgtB催化-谷氨酰半胱氨酸和N-三甲基组氨酸之间的O-2-依赖性CS键形成,这是麦角硫氨酸生物合成的核心步骤。 EgtB的催化活性和结构均不同于已知的硫转移酶或硫醇双加氧酶。来自热抵抗分枝杆菌的EgtB的晶体结构与-谷氨酰半胱氨酸和N-三甲基组氨酸复合显示出两个底物和三个组氨酸残基充当八面体铁结合位点的配体。此活性位点的几何形状与催化机理一致,在该催化机理中,CS键的形成是由铁(III)络合的噻吩基自由基攻击N-三甲基组氨酸的咪唑环而引发的。

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