Jangra Manoj, Travin Dmitrii Y, Aleksandrova Elena V, Kaur Manpreet, Darwish Lena, Koteva Kalinka, Klepacki Dorota, Wang Wenliang, Tiffany Maya, Sokaribo Akosiererem, Coombes Brian K, Vázquez-Laslop Nora, Polikanov Yury S, Mankin Alexander S, Wright Gerard D
David Braley Centre for Antibiotics Discovery, McMaster University, Hamilton, Ontario, Canada.
M. G. DeGroote Institute for Infectious Disease Research, McMaster University, Hamilton, Ontario, Canada.
Nature. 2025 Apr;640(8060):1022-1030. doi: 10.1038/s41586-025-08723-7. Epub 2025 Mar 26.
Lasso peptides (biologically active molecules with a distinct structurally constrained knotted fold) are natural products that belong to the class of ribosomally synthesized and post-translationally modified peptides. Lasso peptides act on several bacterial targets, but none have been reported to inhibit the ribosome, one of the main targets of antibiotics in the bacterial cell. Here we report the identification and characterization of the lasso peptide antibiotic lariocidin and its internally cyclized derivative lariocidin B, produced by Paenibacillus sp. M2, which has broad-spectrum activity against a range of bacterial pathogens. We show that lariocidins inhibit bacterial growth by binding to the ribosome and interfering with protein synthesis. Structural, genetic and biochemical data show that lariocidins bind at a unique site in the small ribosomal subunit, where they interact with the 16S ribosomal RNA and aminoacyl-tRNA, inhibiting translocation and inducing miscoding. Lariocidin is unaffected by common resistance mechanisms, has a low propensity for generating spontaneous resistance, shows no toxicity to human cells, and has potent in vivo activity in a mouse model of Acinetobacter baumannii infection. Our identification of ribosome-targeting lasso peptides uncovers new routes towards the discovery of alternative protein-synthesis inhibitors and offers a novel chemical scaffold for the development of much-needed antibacterial drugs.
套索肽(具有独特结构受限打结折叠的生物活性分子)是一类核糖体合成且经翻译后修饰的天然产物。套索肽作用于多种细菌靶点,但尚未有报道称其能抑制核糖体,而核糖体是细菌细胞中抗生素的主要靶点之一。在此,我们报告了由芽孢杆菌属M2菌株产生的套索肽抗生素拉里西丁及其内环化衍生物拉里西丁B的鉴定和特性,该抗生素对一系列细菌病原体具有广谱活性。我们表明,拉里西丁通过与核糖体结合并干扰蛋白质合成来抑制细菌生长。结构、遗传和生化数据表明,拉里西丁结合在小核糖体亚基的一个独特位点,在那里它们与16S核糖体RNA和氨酰 - tRNA相互作用,抑制转位并诱导错义编码。拉里西丁不受常见耐药机制的影响,产生自发耐药的倾向较低,对人类细胞无毒性,并且在鲍曼不动杆菌感染的小鼠模型中具有强大的体内活性。我们对靶向核糖体的套索肽的鉴定揭示了发现替代蛋白质合成抑制剂的新途径,并为开发急需的抗菌药物提供了一种新型化学支架。