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Complexity generation in fungal polyketide biosynthesis: A spirocycle-forming P450 in the concise pathway to the antifungal drug griseofulvin

机译:真菌聚酮化合物生物合成中的复杂性产生:在通往抗真菌药物灰黄霉素的简洁途径中,形成螺旋体的P450

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摘要

Griseofulvin (1) is a spirocyclic fungal natural product used in treatment of fungal dermatophytes. Formation of the spirocycle, or the grisan scaffold, from a benzophenone precursor is critical for the activity of 1. In this study, we have systematically characterized each of the biosynthetic enzymes related to the biogenesis of 1, including the characterization of a new polyketide synthase GsfA that synthesizes the benzophenone precursor and a cytochrome P450 GsfF that performs oxidative coupling between the orcinol and the phloroglucinol rings to yield the grisan structure. Notably, the finding of GsfF is in sharp contrast to the copper-dependent dihydrogeodin oxidase that performs a similar reaction in the geodin biosynthetic pathway. The biosynthetic knowledge enabled the in vitro total biosynthesis of 1 from malonyl-CoA using all purified enzyme components. This work therefore completely maps out the previously unresolved enzymology of the biosynthesis of a therapeutically relevant natural product
机译:Griseofulvin(1)是用于治疗真菌性皮肤真菌的螺环真菌天然产物。由二苯甲酮前体形成螺旋环或grisan支架对于1的活性至关重要。在这项研究中,我们系统地表征了与1的生物发生有关的每种生物合成酶,包括表征新的聚酮化合物合酶。合成二苯甲酮前体的GsfA和细胞色素P450 GsfF,该蛋白在鸟粪酚和间苯三酚环之间进行氧化偶联,以产生grisan结构。值得注意的是,GsfF的发现与在大肠素生物合成途径中执行类似反应的铜依赖性二氢geodin氧化酶形成鲜明对比。生物合成知识使得能够使用所有纯化的酶成分从丙二酰辅酶A进行体外全生物合成1。因此,这项工作完全勾勒出了治疗相关天然产物生物合成之前未解决的酶学

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