An antibiotic from an uncultured bacterium binds to an immutable target

Publication date

2023-09-14

Authors

Shukla, RhythmORCID 0000-0003-1792-6582ISNI 0000000492921252
Peoples, Aaron J
Ludwig, Kevin C
Maity, Sourav
Derks, Maik G.N.ISNI 0000000512522620
De Benedetti, Stefania
Krueger, Annika M
Vermeulen, Bram J A
Harbig, Theresa
Lavore, FrancescaISNI 000000051255215X

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Antimicrobial resistance is a leading mortality factor worldwide. Here, we report the discovery of clovibactin, an antibiotic isolated from uncultured soil bacteria. Clovibactin efficiently kills drug-resistant Gram-positive bacterial pathogens without detectable resistance. Using biochemical assays, solid-state nuclear magnetic resonance, and atomic force microscopy, we dissect its mode of action. Clovibactin blocks cell wall synthesis by targeting pyrophosphate of multiple essential peptidoglycan precursors (C 55PP, lipid II, and lipid III WTA). Clovibactin uses an unusual hydrophobic interface to tightly wrap around pyrophosphate but bypasses the variable structural elements of precursors, accounting for the lack of resistance. Selective and efficient target binding is achieved by the sequestration of precursors into supramolecular fibrils that only form on bacterial membranes that contain lipid-anchored pyrophosphate groups. This potent antibiotic holds the promise of enabling the design of improved therapeutics that kill bacterial pathogens without resistance development.

Keywords

Anti-Bacterial Agents/isolation & purification, Bacteria, Biological Assay, Diphosphates, Soil Microbiology

Citation

Shukla, R, Peoples, A J, Ludwig, K C, Maity, S, Derks, M G N, De Benedetti, S, Krueger, A M, Vermeulen, B J A, Harbig, T, Lavore, F, Kumar, R, Honorato, R V, Grein, F, Nieselt, K, Liu, Y, Bonvin, A M J J, Baldus, M, Kubitscheck, U, Breukink, E, Achorn, C, Nitti, A, Schwalen, C J, Spoering, A L, Ling, L L, Hughes, D, Lelli, M, Roos, W H, Lewis, K, Schneider, T & Weingarth, M 2023, 'An antibiotic from an uncultured bacterium binds to an immutable target', Cell, vol. 186, no. 19, pp. 4059-4073.e27. https://doi.org/10.1016/j.cell.2023.07.038