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Flavoenzyme-catalyzed atropo-selective NC-bipyrrole homocoupling in marinopyrrole biosynthesis

机译:黄素酶催化atropo选择性NC-二吡咯自偶联在marinopyrrole生物合成

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摘要

Axially chiral biaryl compounds are frequently encountered in nature where they exhibit diverse biological properties. Many are biphenols that have C–C or C–O linkages installed by cytochrome P450 oxygenases that control the regio- and stereoselectivity of the intermolecular coupling reaction. In contrast, bipyrrole-coupling enzymology has not been observed. Marinopyrroles, produced by a marine- derived streptomycete, are the first 1,3′-bipyrrole natural products. On the basis of marinopyrrole’s unusual bipyrrole structure, we explored its atropo-selective biosynthesis in Streptomyces sp. CNQ-418 in order to elucidate the N,C-bipyrrole homocoupling enzymology. Through a series of genetic experiments involving the discovery and heterologous expression of marinopyrrole biosynthesis genes, we report that two flavin-dependent halogenases catalyze the unprecedented homocoupling reaction.
机译:轴向手性联芳基化合物在自然界经常遇到,它们表现出多种生物学特性。许多是通过细胞色素P450氧化酶安装了C–C或C–O键的双酚,它们控制分子间偶联反应的区域和立体选择性。相反,尚未观察到双吡咯偶联酶。由海洋衍生的链霉菌产生的马来吡咯是第一种1,3'-联吡咯的天然产物。基于马里诺吡咯不同寻常的双吡咯结构,我们在链霉菌属物种中探索了其对鸟嘌呤的选择性生物合成。 CNQ-418是为了阐明N,C-联吡咯同系酶。通过一系列涉及marinopyrrole生物合成基因的发现和异源表达的遗传实验,我们报道了两种黄素依赖性卤化酶催化了前所未有的均偶联反应。

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