Lassomycin, a ribosomally synthesized cyclic peptide, kills mycobacterium tuberculosis by targeting the ATP-dependent protease ClpC1P1P2

拉索霉素是一种核糖体合成的环肽,它通过靶向 ATP 依赖性蛋白酶 ClpC1P1P2 来杀死结核分枝杆菌

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作者:Ekaterina Gavrish, Clarissa S Sit, Shugeng Cao, Olga Kandror, Amy Spoering, Aaron Peoples, Losee Ling, Ashley Fetterman, Dallas Hughes, Anthony Bissell, Heather Torrey, Tatos Akopian, Andreas Mueller, Slava Epstein, Alfred Goldberg, Jon Clardy, Kim Lewis

Abstract

Languishing antibiotic discovery and flourishing antibiotic resistance have prompted the development of alternative untapped sources for antibiotic discovery, including previously uncultured bacteria. Here, we screen extracts from uncultured species against Mycobacterium tuberculosis and identify lassomycin, an antibiotic that exhibits potent bactericidal activity against both growing and dormant mycobacteria, including drug-resistant forms of M. tuberculosis, but little activity against other bacteria or mammalian cells. Lassomycin is a highly basic, ribosomally encoded cyclic peptide with an unusual structural fold that only partially resembles that of other lasso peptides. We show that lassomycin binds to a highly acidic region of the ClpC1 ATPase complex and markedly stimulates its ATPase activity without stimulating ClpP1P2-catalyzed protein breakdown, which is essential for viability of mycobacteria. This mechanism, uncoupling ATPase from proteolytic activity, accounts for the bactericidal activity of lassomycin.

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