Department of Molecular Microbiology, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.
School of Biological Sciences, University of East Anglia, Norwich Research Park, Norwich, NR4 7TJ, UK.
Nat Commun. 2019 Aug 9;10(1):3611. doi: 10.1038/s41467-019-11538-6.
The formicamycin biosynthetic gene cluster encodes two groups of type 2 polyketide antibiotics: the formicamycins and their biosynthetic precursors the fasamycins, both of which have activity against methicillin-resistant Staphylococcus aureus. Here, we report the formicapyridines which are encoded by the same gene cluster and are structurally and biosynthetically related to the fasamycins and formicamycins but comprise a rare pyridine moiety. These compounds are trace-level metabolites formed by derailment of the major biosynthetic pathway. Inspired by evolutionary logic we show that rational mutation of a single gene in the biosynthetic gene cluster encoding an antibiotic biosynthesis monooxygenase (ABM) superfamily protein leads to a significant increase both in total formicapyridine production and their enrichment relative to the fasamycins/formicamycins. Our observations broaden the polyketide biosynthetic landscape and identify a non-catalytic role for ABM superfamily proteins in type II polyketide synthase assemblages for maintaining biosynthetic pathway fidelity.
该 formicamycin 生物合成基因簇编码两类 2 型聚酮类抗生素:formicamycins 和它们的生物合成前体 fasamycins,两者均对耐甲氧西林金黄色葡萄球菌具有活性。在这里,我们报告了由相同基因簇编码的 formicapyridines,它们在结构和生物合成上与 fasamycins 和 formicamycins 相关,但包含一个罕见的吡啶部分。这些化合物是由主要生物合成途径脱轨形成的痕量代谢物。受进化逻辑的启发,我们表明,对编码抗生素生物合成单加氧酶 (ABM) 超家族蛋白的生物合成基因簇中的单个基因进行合理突变,可显著增加 formicapyridines 的总产量及其相对于 fasamycins/formicamycins 的富集度。我们的观察拓宽了聚酮生物合成景观,并确定了 ABM 超家族蛋白在 II 型聚酮合酶组合体中维持生物合成途径保真度的非催化作用。