Center for Marine Biotechnology and Biomedicine, Scripps Institution of Oceanography, University of California at San Diego, La Jolla, California, USA.
Nat Chem Biol. 2011 Oct 9;7(11):794-802. doi: 10.1038/nchembio.684.
Peptide natural products show broad biological properties and are commonly produced by orthogonal ribosomal and nonribosomal pathways in prokaryotes and eukaryotes. To harvest this large and diverse resource of bioactive molecules, we introduce here natural product peptidogenomics (NPP), a new MS-guided genome-mining method that connects the chemotypes of peptide natural products to their biosynthetic gene clusters by iteratively matching de novo tandem MS (MS(n)) structures to genomics-based structures following biosynthetic logic. In this study, we show that NPP enabled the rapid characterization of over ten chemically diverse ribosomal and nonribosomal peptide natural products of previously unidentified composition from Streptomycete bacteria as a proof of concept to begin automating the genome-mining process. We show the identification of lantipeptides, lasso peptides, linardins, formylated peptides and lipopeptides, many of which are from well-characterized model Streptomycetes, highlighting the power of NPP in the discovery of new peptide natural products from even intensely studied organisms.
肽类天然产物具有广泛的生物学特性,通常由原核生物和真核生物中的正交核糖体和非核糖体途径产生。为了充分利用这一大规模且多样化的生物活性分子资源,我们引入了天然产物肽组学(NPP),这是一种新的 MS 引导的基因组挖掘方法,通过根据生物合成逻辑将从头串联 MS(MS(n))结构与基于基因组的结构进行反复匹配,将肽类天然产物的化学类型与其生物合成基因簇联系起来。在本研究中,我们证明 NPP 能够快速表征来自链霉菌属细菌的超过十种以前未知组成的化学多样性核糖体和非核糖体肽类天然产物,作为开始自动化基因组挖掘过程的概念验证。我们鉴定了 lantipeptides、lasso peptides、linardins、formylated peptides 和 lipopeptides,其中许多来自经过充分研究的模式链霉菌属,这突出了 NPP 在发现即使是经过深入研究的生物体内新的肽类天然产物方面的强大功能。