Helmholtz Institute for Pharmaceutical Research Saarland (HIPS), Helmholtz Centre for Infection Research (HZI), Saarland University Campus, 66123 Saarbrücken, Germany.
Department of Chemistry and Biochemistry, Florida International University, Miami, Florida 33199, United States.
J Nat Prod. 2021 Oct 22;84(10):2683-2691. doi: 10.1021/acs.jnatprod.1c00514. Epub 2021 Oct 1.
Lasso peptides are members of the natural product superfamily of ribosomally synthesized and post-translationally modified peptides (RiPPs). Here, we describe the first lasso peptide originating from a biosynthetic gene cluster belonging to a unique lasso peptide subclade defined by the presence of a bifunctional protein harboring both a leader peptidase (B2) and an ABC transporter (D) domain. Bioinformatic analysis revealed that these clusters also encode homologues of the NisR/NisK regulatory system and the NisF/NisE/NisG immunity factors, which are usually associated with the clusters of antimicrobial class I lanthipeptides, such as nisin, another distinct RiPP subfamily. The cluster enabling the heterologous production of the lasso peptide cochonodin I in originated from LSS65, and the threaded structure of cochonodin I was evidenced through extensive MS/MS analysis and stability assays. It was shown that the ABC transporter domain from SsuB2/D is not essential for lasso peptide maturation. By extensive genome mining dedicated exclusively to other lasso peptide biosynthetic gene clusters featuring bifunctional B2/D proteins, it was furthermore revealed that many bacteria associated with human or animal microbiota hold the biosynthetic potential to produce cochonodin-like lasso peptides, implying that these natural products might play roles in human and animal health.
套索肽是核糖体合成和翻译后修饰肽(RiPPs)天然产物超家族的成员。在这里,我们描述了第一个源自生物合成基因簇的套索肽,该基因簇属于一个独特的套索肽亚类,其特征是存在具有双功能的蛋白质,该蛋白质同时具有一个前导肽酶(B2)和一个 ABC 转运蛋白(D)结构域。生物信息学分析表明,这些簇还编码了 NisR/NisK 调节系统和 NisF/NisE/NisG 免疫因子的同源物,这些通常与抗菌类 I 兰尼肽簇相关,如另一种独特的 RiPP 亚家族——乳链菌肽。能够在 中异源生产套索肽 cochonodin I 的簇来自 LSS65,并且通过广泛的 MS/MS 分析和稳定性测定证实了 cochonodin I 的穿线结构。结果表明,来自 SsuB2/D 的 ABC 转运蛋白结构域对于套索肽成熟并非必不可少。通过专门针对具有双功能 B2/D 蛋白的其他套索肽生物合成基因簇进行的广泛基因组挖掘,进一步揭示了许多与人类或动物微生物群相关的细菌具有产生 cochonodin 样套索肽的生物合成潜力,这意味着这些天然产物可能在人类和动物健康中发挥作用。