非核糖体肽
异喹啉
生物合成
烟曲霉
基因簇
聚酮
聚酮合酶
生物
生物化学
化学
基因
立体化学
微生物学
作者
Joshua A. Baccile,Joseph E. Spraker,Henry H. Le,Eileen Brandenburger,Christian Gomez,Jin Woo Bok,Juliane Macheleidt,Axel A. Brakhage,Dirk Hoffmeister,Nancy P. Keller,Frank C. Schroeder
标识
DOI:10.1038/nchembio.2061
摘要
Natural product discovery efforts have focused primarily on microbial biosynthetic gene clusters (BGCs) containing large multimodular polyketide synthases and nonribosomal peptide synthetases; however, sequencing of fungal genomes has revealed a vast number of BGCs containing smaller NRPS-like genes of unknown biosynthetic function. Using comparative metabolomics, we show that a BGC in the human pathogen Aspergillus fumigatus named fsq, which contains an NRPS-like gene lacking a condensation domain, produces several new isoquinoline alkaloids known as the fumisoquins. These compounds derive from carbon-carbon bond formation between two amino acid-derived moieties followed by a sequence that is directly analogous to isoquinoline alkaloid biosynthesis in plants. Fumisoquin biosynthesis requires the N-methyltransferase FsqC and the FAD-dependent oxidase FsqB, which represent functional analogs of coclaurine N-methyltransferase and berberine bridge enzyme in plants. Our results show that BGCs containing incomplete NRPS modules may reveal new biosynthetic paradigms and suggest that plant-like isoquinoline biosynthesis occurs in diverse fungi.
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