Bioinformatics and Systems Biology Program, University of California San Diego, La Jolla, CA, USA.
Center for Microbiome Innovation, University of California at San Diego, La Jolla, CA, USA.
Nat Commun. 2021 May 28;12(1):3225. doi: 10.1038/s41467-021-23502-4.
Non-Ribosomal Peptides (NRPs) represent a biomedically important class of natural products that include a multitude of antibiotics and other clinically used drugs. NRPs are not directly encoded in the genome but are instead produced by metabolic pathways encoded by biosynthetic gene clusters (BGCs). Since the existing genome mining tools predict many putative NRPs synthesized by a given BGC, it remains unclear which of these putative NRPs are correct and how to identify post-assembly modifications of amino acids in these NRPs in a blind mode, without knowing which modifications exist in the sample. To address this challenge, here we report NRPminer, a modification-tolerant tool for NRP discovery from large (meta)genomic and mass spectrometry datasets. We show that NRPminer is able to identify many NRPs from different environments, including four previously unreported NRP families from soil-associated microbes and NRPs from human microbiota. Furthermore, in this work we demonstrate the anti-parasitic activities and the structure of two of these NRP families using direct bioactivity screening and nuclear magnetic resonance spectrometry, illustrating the power of NRPminer for discovering bioactive NRPs.
非核糖体肽(NRP)是一类具有重要生物医学意义的天然产物,包括多种抗生素和其他临床应用的药物。NRP 不是直接编码在基因组中,而是由生物合成基因簇(BGC)编码的代谢途径产生的。由于现有的基因组挖掘工具预测了给定 BGC 合成的许多假定 NRP,因此仍然不清楚这些假定 NRP 中哪些是正确的,以及如何在不了解样品中存在哪些修饰的情况下,以盲法识别这些 NRP 中氨基酸的组装后修饰。为了解决这一挑战,我们在这里报告了 NRPminer,这是一种从大型(宏基因组和质谱数据集)中发现 NRP 的修饰容忍工具。我们表明,NRPminer 能够从不同的环境中识别出许多 NRP,包括来自土壤相关微生物的四种以前未报道的 NRP 家族和来自人类微生物组的 NRP。此外,在这项工作中,我们使用直接生物活性筛选和核磁共振光谱法展示了其中两种 NRP 家族的抗寄生虫活性和结构,说明了 NRPminer 发现具有生物活性的 NRP 的强大功能。