Polyketide synthase (PKS) and nonribosomal peptide synthetase (NRPS) hybrid systems typically use complex protein-protein interactions to facilitate direct transfer of intermediates between these multimodular megaenzymes. In the canal-associated neurons (CANs) of Caenorhabditis elegans, PKS-1 and NRPS-1 produce the nemamides, the only known hybrid polyketide-nonribosomal peptides biosynthesized by animals, through a poorly understood mechanism. Here, we use genome editing and mass spectrometry to map the roles of individual PKS-1 and NRPS-1 enzymatic domains in nemamide biosynthesis. Furthermore, we show that nemamide biosynthesis requires at least five additional enzymes expressed in the CANs that are encoded by genes distributed across the worm genome. We identify the roles of these enzymes and discover a mechanism for trafficking intermediates between a PKS and an NRPS. Specifically, the enzyme PKAL-1 activates an advanced polyketide intermediate as an adenylate and directly loads it onto a carrier protein in NRPS-1. This trafficking mechanism provides a means by which a PKS-NRPS system can expand its biosynthetic potential and is likely important for the regulation of nemamide biosynthesis.
Mapping the biosynthetic pathway of a hybrid polyketide-nonribosomal peptide in a metazoan.
绘制后生动物中杂合聚酮-非核糖体肽的生物合成途径图
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作者:Feng Likui, Gordon Matthew T, Liu Ying, Basso Kari B, Butcher Rebecca A
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2021 | 起止号: | 2021 Aug 13; 12(1):4912 |
| doi: | 10.1038/s41467-021-24682-9 | ||
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