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涉及构建辅酶和天然产物碳骨架的 C-C 键形成自由基 S-腺苷甲硫氨酸酶。

C-C bond forming radical SAM enzymes involved in the construction of carbon skeletons of cofactors and natural products.

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Nat Prod Rep. 2018 Jul 18;35(7):660-694. doi: 10.1039/c8np00006a.

Abstract

Covering: up to the end of 2017 C-C bond formations are frequently the key steps in cofactor and natural product biosynthesis. Historically, C-C bond formations were thought to proceed by two electron mechanisms, represented by Claisen condensation in fatty acids and polyketide biosynthesis. These types of mechanisms require activated substrates to create a nucleophile and an electrophile. More recently, increasing number of C-C bond formations catalyzed by radical SAM enzymes are being identified. These free radical mediated reactions can proceed between almost any sp3 and sp2 carbon centers, allowing introduction of C-C bonds at unconventional positions in metabolites. Therefore, free radical mediated C-C bond formations are frequently found in the construction of structurally unique and complex metabolites. This review discusses our current understanding of the functions and mechanisms of C-C bond forming radical SAM enzymes and highlights their important roles in the biosynthesis of structurally complex, naturally occurring organic molecules. Mechanistic consideration of C-C bond formation by radical SAM enzymes identifies the significance of three key mechanistic factors: radical initiation, acceptor substrate activation and radical quenching. Understanding the functions and mechanisms of these characteristic enzymes will be important not only in promoting our understanding of radical SAM enzymes, but also for understanding natural product and cofactor biosynthesis.

摘要

涵盖

截至 2017 年底,C-C 键的形成通常是辅因子和天然产物生物合成的关键步骤。从历史上看,C-C 键的形成被认为是通过两种电子机制进行的,这两种机制分别由脂肪酸中的 Claisen 缩合和聚酮化合物生物合成来代表。这些类型的机制需要激活的底物来创建亲核试剂和亲电试剂。最近,越来越多的由自由基 SAM 酶催化的 C-C 键形成被鉴定出来。这些自由基介导的反应可以在几乎任何 sp3 和 sp2 碳原子中心之间进行,从而可以在代谢物的非常规位置引入 C-C 键。因此,自由基介导的 C-C 键形成通常存在于结构独特和复杂的代谢物的构建中。这篇综述讨论了我们目前对 C-C 键形成自由基 SAM 酶的功能和机制的理解,并强调了它们在结构复杂的天然存在的有机分子生物合成中的重要作用。通过自由基 SAM 酶形成 C-C 键的机制考虑确定了三个关键机制因素的重要性:自由基引发、受体底物活化和自由基猝灭。理解这些特征酶的功能和机制不仅对于促进我们对自由基 SAM 酶的理解很重要,而且对于理解天然产物和辅因子的生物合成也很重要。

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