Department of Pharmacy, Pharmaceutical Biotechnology, Saarland University, Campus C2.3, 66123, Saarbrücken, Germany.
Department of Pharmacy, Pharmaceutical Biotechnology, Saarland University, Campus C2.3, 66123, Saarbrücken, Germany; Department of Pharmacy, Pharmaceutical Biology, Saarland University, Campus C2.3, 66123, Saarbrücken, Germany.
Metab Eng. 2023 Jul;78:48-60. doi: 10.1016/j.ymben.2023.04.015. Epub 2023 May 2.
Derivatizing natural products (NPs) is essential in structure-activity relationship (SAR) studies, compound optimization, and drug development. Ribosomally synthesized and post-translationally modified peptides (RiPPs) represent one of the major classes of natural products. Thioholgamide represents thioamitide - a recently emerged family of RiPPs with unique structures and great potential in anticancer drug development. Although the method for generating the RiPP library by codon substitutions in the precursor peptide gene is straightforward, the techniques to perform RiPP derivatization in Actinobacteria remain limited and time-consuming. Here, we report a facile system for producing a library of randomized thioholgamide derivatives utilizing an optimized Streptomyces host. This technique enabled us to access all possible amino acid substitutions of the thioholgamide molecule, one position at a time. Out of 152 potential derivatives, 85 were successfully detected, revealing the impact of amino acid substitutions on thioholgamide post-translational modifications (PTMs). Moreover, new PTMs were observed among thioholgamide derivatives: thiazoline heterocycles, which have not yet been reported for thioamitides, and S-methylmethionine, which is very rare in nature. The obtained library was subsequently used for thioholgamide SAR studies and stability assays.
对天然产物(NPs)进行衍生化在结构-活性关系(SAR)研究、化合物优化和药物开发中至关重要。核糖体合成和翻译后修饰的肽(RiPPs)代表了主要的天然产物类别之一。硫代霍加酰胺代表硫代酰胺——一种最近出现的 RiPP 家族,具有独特的结构和在抗癌药物开发中的巨大潜力。尽管通过在前体肽基因中替换密码子来生成 RiPP 文库的方法很直接,但在放线菌中进行 RiPP 衍生化的技术仍然有限且耗时。在这里,我们报告了一种利用优化的链霉菌宿主生产随机硫代霍加酰胺衍生物文库的简便系统。该技术使我们能够一次一个位置,对硫代霍加酰胺分子进行所有可能的氨基酸取代。在 152 种潜在的衍生物中,有 85 种成功检测到,揭示了氨基酸取代对硫代霍加酰胺翻译后修饰(PTMs)的影响。此外,在硫代霍加酰胺衍生物中观察到新的 PTMs:噻唑啉杂环,这在硫代酰胺中尚未报道过,而 S-甲基甲硫氨酸在自然界中非常罕见。随后,该文库被用于硫代霍加酰胺 SAR 研究和稳定性测定。