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首页> 外文期刊>Angewandte Chemie >Enzymatic Cascade Reactions in Biosynthesis
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Enzymatic Cascade Reactions in Biosynthesis

机译:生物合成中的酶级联反应

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Enzyme-mediated cascade reactions are widespread in biosynthesis. To facilitate comparison with the mechanistic categorizations of cascade reactions by synthetic chemists and delineate the common underlying chemistry, we discuss four types of enzymatic cascade reactions: those involving nucleophilic, electrophilic, pericyclic, and radical reactions. Two subtypes of enzymes that generate radical cascades exist at opposite ends of the oxygen abundance spectrum. Iron-based enzymes use O-2 to generate high valent iron-oxo species to homolyze unactivated C-H bonds in substrates to initiate skeletal rearrangements. At anaerobic end, enzymes reversibly cleave S-adenosylmethionine (SAM) to generate the 5 '-deoxyadenosyl radical as a powerful oxidant to initiate C-H bond homolysis in bound substrates. The latter enzymes are termed radical SAM enzymes. We categorize the former as thwarted oxygenases.
机译:酶介导的级联反应是生物合成的广泛。 为了方便与合成化学家级联反应的机械分类进行比较并描绘共同的潜在化学,讨论了四种酶肠果反应:涉及亲核,亲电子,近环和自由基反应的那些。 产生自由基级联的两种酶存在于氧丰谱的相对端。 基于铁基酶使用O-2产生高价铁氧烷种类,以在底物中均匀地聚解,以引发骨骼重排。 在厌氧末端,酶可逆地切割S-腺苷甲硫氨酸(SAM),以产生5'-丁氧基糖基作为强氧化剂,以引发结合底物中的C-H键均匀溶剂。 后一种酶被称为基团SAM酶。 我们将前者分类为截止氧气酶。

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