Biological Chemistry Group, Institute of Biology, Leiden University, Sylviusweg 72, 2333 BE Leiden, Netherlands.
Molecular Biotechnology Group, Institute of Biology, Leiden University, Sylviusweg 72, 2333 BE Leiden, Netherlands.
ACS Infect Dis. 2023 Apr 14;9(4):739-748. doi: 10.1021/acsinfecdis.3c00043. Epub 2023 Mar 31.
The unabated rise of antibiotic resistance has raised the specter of a post-antibiotic era and underscored the importance of developing new classes of antibiotics. The relacidines are a recently discovered group of nonribosomal lipopeptide antibiotics that show promising activity against Gram-negative pathogens and share structural similarities with brevicidine and laterocidine. While the first reports of the relacidines indicated that they possess a C-terminal five-amino acid macrolactone, an N-terminal lipid tail, and an overall positive charge, no stereochemical configuration was assigned, thereby precluding a full structure determination. To address this issue, we here report a bioinformatics guided total synthesis of relacidine A and B and show that the authentic natural products match our predicted and synthesized structures. Following on this, we also synthesized an analogue of relacidine A wherein the ester linkage of the macrolactone was replaced by the corresponding amide. This analogue was found to possess enhanced hydrolytic stability while maintaining the antibacterial activity of the natural product in both and efficacy studies.
抗生素耐药性的持续上升引发了后抗生素时代的出现,并强调了开发新型抗生素的重要性。雷拉菌素是最近发现的一组非核糖体脂肽类抗生素,对革兰氏阴性病原体具有有前景的活性,并且与布雷维菌素和洛特西菌素具有结构相似性。尽管关于雷拉菌素的最初报告表明它们具有 C 端五氨基酸大环内酯、N 端脂质尾巴和整体正电荷,但没有分配立体化学构型,从而排除了完整的结构确定。为了解决这个问题,我们在这里报告了雷拉菌素 A 和 B 的生物信息学指导的全合成,并表明真实的天然产物与我们预测和合成的结构相匹配。在此基础上,我们还合成了雷拉菌素 A 的类似物,其中大环内酯的酯键被相应的酰胺取代。该类似物被发现具有增强的水解稳定性,同时在 和 功效研究中保持天然产物的抗菌活性。