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A new antibiotic from an uncultured bacterium binds to an immutable target

Antimicrobial resistance is a leading mortality factor worldwide. Here we report the discovery of clovibactin, a new antibiotic, isolated from uncultured soil bacteria. Clovibactin efficiently kills drug-resistant bacterial pathogens without detectable resistance. Using biochemical assays, solid-sta...

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Autores principales: Shukla, Rhythm, Peoples, Aaron J., Ludwig, Kevin C., Maity, Sourav, Derks, Maik G.N., de Benedetti, Stefania, Krueger, Annika M, Vermeulen, Bram J.A., Lavore, Francesca, Honorato, Rodrigo V., Grein, Fabian, Bonvin, Alexandre, Kubitscheck, Ulrich, Breukink, Eefjan, Achorn, Catherine, Nitti, Anthony, Schwalen, Christopher J., Spoering, Amy L., Ling, Losee Lucy, Hughes, Dallas, Lelli, Moreno, Roos, Wouter H., Lewis, Kim, Schneider, Tanja, Weingarth, Markus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10245560/
https://www.ncbi.nlm.nih.gov/pubmed/37292624
http://dx.doi.org/10.1101/2023.05.15.540765
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author Shukla, Rhythm
Peoples, Aaron J.
Ludwig, Kevin C.
Maity, Sourav
Derks, Maik G.N.
de Benedetti, Stefania
Krueger, Annika M
Vermeulen, Bram J.A.
Lavore, Francesca
Honorato, Rodrigo V.
Grein, Fabian
Bonvin, Alexandre
Kubitscheck, Ulrich
Breukink, Eefjan
Achorn, Catherine
Nitti, Anthony
Schwalen, Christopher J.
Spoering, Amy L.
Ling, Losee Lucy
Hughes, Dallas
Lelli, Moreno
Roos, Wouter H.
Lewis, Kim
Schneider, Tanja
Weingarth, Markus
author_facet Shukla, Rhythm
Peoples, Aaron J.
Ludwig, Kevin C.
Maity, Sourav
Derks, Maik G.N.
de Benedetti, Stefania
Krueger, Annika M
Vermeulen, Bram J.A.
Lavore, Francesca
Honorato, Rodrigo V.
Grein, Fabian
Bonvin, Alexandre
Kubitscheck, Ulrich
Breukink, Eefjan
Achorn, Catherine
Nitti, Anthony
Schwalen, Christopher J.
Spoering, Amy L.
Ling, Losee Lucy
Hughes, Dallas
Lelli, Moreno
Roos, Wouter H.
Lewis, Kim
Schneider, Tanja
Weingarth, Markus
author_sort Shukla, Rhythm
collection PubMed
description Antimicrobial resistance is a leading mortality factor worldwide. Here we report the discovery of clovibactin, a new antibiotic, isolated from uncultured soil bacteria. Clovibactin efficiently kills drug-resistant bacterial pathogens without detectable resistance. Using biochemical assays, solid-state NMR, and atomic force microscopy, we dissect its mode of action. Clovibactin blocks cell wall synthesis by targeting pyrophosphate of multiple essential peptidoglycan precursors (C(55)PP, Lipid II, Lipid(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 irreversible sequestration of precursors into supramolecular fibrils that only form on bacterial membranes that contain lipid-anchored pyrophosphate groups. Uncultured bacteria offer a rich reservoir of antibiotics with new mechanisms of action that could replenish the antimicrobial discovery pipeline.
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spelling pubmed-102455602023-06-08 A new antibiotic from an uncultured bacterium binds to an immutable target Shukla, Rhythm Peoples, Aaron J. Ludwig, Kevin C. Maity, Sourav Derks, Maik G.N. de Benedetti, Stefania Krueger, Annika M Vermeulen, Bram J.A. Lavore, Francesca Honorato, Rodrigo V. Grein, Fabian Bonvin, Alexandre Kubitscheck, Ulrich Breukink, Eefjan Achorn, Catherine Nitti, Anthony Schwalen, Christopher J. Spoering, Amy L. Ling, Losee Lucy Hughes, Dallas Lelli, Moreno Roos, Wouter H. Lewis, Kim Schneider, Tanja Weingarth, Markus bioRxiv Article Antimicrobial resistance is a leading mortality factor worldwide. Here we report the discovery of clovibactin, a new antibiotic, isolated from uncultured soil bacteria. Clovibactin efficiently kills drug-resistant bacterial pathogens without detectable resistance. Using biochemical assays, solid-state NMR, and atomic force microscopy, we dissect its mode of action. Clovibactin blocks cell wall synthesis by targeting pyrophosphate of multiple essential peptidoglycan precursors (C(55)PP, Lipid II, Lipid(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 irreversible sequestration of precursors into supramolecular fibrils that only form on bacterial membranes that contain lipid-anchored pyrophosphate groups. Uncultured bacteria offer a rich reservoir of antibiotics with new mechanisms of action that could replenish the antimicrobial discovery pipeline. Cold Spring Harbor Laboratory 2023-05-15 /pmc/articles/PMC10245560/ /pubmed/37292624 http://dx.doi.org/10.1101/2023.05.15.540765 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Shukla, Rhythm
Peoples, Aaron J.
Ludwig, Kevin C.
Maity, Sourav
Derks, Maik G.N.
de Benedetti, Stefania
Krueger, Annika M
Vermeulen, Bram J.A.
Lavore, Francesca
Honorato, Rodrigo V.
Grein, Fabian
Bonvin, Alexandre
Kubitscheck, Ulrich
Breukink, Eefjan
Achorn, Catherine
Nitti, Anthony
Schwalen, Christopher J.
Spoering, Amy L.
Ling, Losee Lucy
Hughes, Dallas
Lelli, Moreno
Roos, Wouter H.
Lewis, Kim
Schneider, Tanja
Weingarth, Markus
A new antibiotic from an uncultured bacterium binds to an immutable target
title A new antibiotic from an uncultured bacterium binds to an immutable target
title_full A new antibiotic from an uncultured bacterium binds to an immutable target
title_fullStr A new antibiotic from an uncultured bacterium binds to an immutable target
title_full_unstemmed A new antibiotic from an uncultured bacterium binds to an immutable target
title_short A new antibiotic from an uncultured bacterium binds to an immutable target
title_sort new antibiotic from an uncultured bacterium binds to an immutable target
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10245560/
https://www.ncbi.nlm.nih.gov/pubmed/37292624
http://dx.doi.org/10.1101/2023.05.15.540765
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