环肽
肽
生物合成
生物化学
化学
肽生物合成
体系结构域
生物
基因
核糖核酸
核糖体
企业架构
建筑
艺术
视觉艺术
企业架构管理
作者
Desnor N. Chigumba,Lisa S. Mydy,Floris de Waal,Wenjie Li,Khadija Shafiq,Jesse W. Wotring,Osama G. Mohamed,Tim Mladenovic,Ashootosh Tripathi,Jonathan Z. Sexton,Satria A. Kautsar,Marnix H. Medema,Roland D. Kersten
标识
DOI:10.1038/s41589-021-00892-6
摘要
Many bioactive plant cyclic peptides form side-chain-derived macrocycles. Lyciumins, cyclic plant peptides with tryptophan macrocyclizations, are ribosomal peptides (RiPPs) originating from repetitive core peptide motifs in precursor peptides with plant-specific BURP (BNM2, USP, RD22 and PG1beta) domains, but the biosynthetic mechanism for their formation has remained unknown. Here, we characterize precursor-peptide BURP domains as copper-dependent autocatalytic peptide cyclases and use a combination of tandem mass spectrometry-based metabolomics and plant genomics to systematically discover five BURP-domain-derived plant RiPP classes, with mono- and bicyclic structures formed via tryptophans and tyrosines, from botanical collections. As BURP-domain cyclases are scaffold-generating enzymes in plant specialized metabolism that are physically connected to their substrates in the same polypeptide, we introduce a bioinformatic method to mine plant genomes for precursor-peptide-encoding genes by detection of repetitive substrate domains and known core peptide features. Our study sets the stage for chemical, biosynthetic and biological exploration of plant RiPP natural products from BURP-domain cyclases.
科研通智能强力驱动
Strongly Powered by AbleSci AI