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Non-enzymatic pyridine ring formation in the biosynthesis of the rubrolone tropolone alkaloids

机译:异丁烷酮托酚酮生物碱生物合成中的非酶吡啶环形成

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The pyridine ring is a potent pharmacophore in alkaloid natural products. Nonetheless, its biosynthetic pathways are poorly understood. Rubrolones A and B are tropolone alkaloid natural products possessing a unique tetra-substituted pyridine moiety. Here, we report the gene cluster and propose a biosynthetic pathway for rubrolones, identifying a key intermediate that accumulates upon inactivation of sugar biosynthetic genes. Critically, this intermediate was converted to the aglycones of rubrolones by non-enzymatic condensation and cyclization with either ammonia or anthranilic acid to generate the respective pyridine rings. We propose that this non-enzymatic reaction occurs via hydrolysis of the key intermediate, which possesses a 1,5-dione moiety as an amine acceptor capable of cyclization. This study suggests that 1,5-dione moieties may represent a general strategy for pyridine ring biosynthesis, and more broadly highlights the utility of non-enzymatic diversification for exploring and expanding natural product chemical space.
机译:吡啶环是生物碱天然产物中的有效药效团。然而,对其生物合成途径了解甚少。 Rubrolones A和B是具有独特的四取代吡啶部分的托酚酮生物碱天然产物。在这里,我们报告了基因簇,并提出了一种生物合成途径的鲁滨酮,确定糖生物合成基因失活时积累的关键中间体。至关重要的是,该中间体通过非酶促缩合反应并与氨水或邻氨基苯甲酸环化,转化为卢布隆的糖苷配基,以生成各自的吡啶环。我们提出这种非酶促反应是通过关键中间体的水解而发生的,该中间体具有1,5-二酮部分作为能够环化的胺受体。这项研究表明,1,5-二酮部分可能代表了吡啶环生物合成的一般策略,并且更广泛地强调了非酶多样性在探索和扩大天然产物化学空间中的效用。

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