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Heterologous Production of Fungal Maleidrides Reveals the Cryptic Cyclization Involved in their Biosynthesis

机译:真菌马来酰亚胺的异源生产揭示了涉及其生物合成的隐性环化。

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摘要

Fungal maleidrides are an important family of bioactive secondary metabolites that consist of 7, 8, or 9-membered carbocycles with one or two fused maleic anhydride moieties. The biosynthesis of byssochlamic acid (a nonadride) and agnestadride A (a heptadride) was investigated through gene disruption and heterologous expression experiments. The results reveal that the precursors for cyclization are formed by an iterative highly reducing fungal polyketide synthase supported by a hydrolase, together with two citrate-processing enzymes. The enigmatic ring formation is catalyzed by two proteins with homology to ketosteroid isomerases, and assisted by two proteins with homology to phosphatidylethanolamine-binding proteins. Ring cycle: The enzymes involved in the cyclization of the maleidride family of bioactive fungal natural products, including agnestadride A and byssochlamic acid, were identified. These previously unknown proteins show homology to ketosteroid isomerases (KI-like) and phosphatidylethanolamine-binding proteins (PEBP-like).
机译:真菌马来酰亚胺是重要的生物活性次级代谢物家族,其由具有一个或两个稠合马来酸酐部分的7、8或9元碳环组成。通过基因破坏和异源表达实验研究了邻苯二甲酸(一种非酰胺化物)和那格列奈酯A(一种七溴化物)的生物合成。结果表明,用于环化的前体是由水解酶支持的高度还原的真菌聚酮化合物合酶与两种柠檬酸盐加工酶共同形成的。神秘的环形成是由两个与酮类固醇异构酶具有同源性的蛋白催化的,并由两个与磷脂酰乙醇胺结合蛋白具有同源性的蛋白辅助。环循环:鉴定了与生物活性真菌天然产物马来酸系列的环化反应有关的酶,包括阿格列奈德A和邻苯二酸。这些先前未知的蛋白质显示出与酮类固醇异构酶(KI样)和磷脂酰乙醇胺结合蛋白(PEBP样)的同源性。

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