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Cryptic β-Lactamase Evolution Is Driven by Low β-Lactam Concentrations

Our current understanding of how low antibiotic concentrations shape the evolution of contemporary β-lactamases is limited. Using the widespread carbapenemase OXA-48, we tested the long-standing hypothesis that selective compartments with low antibiotic concentrations cause standing genetic diversit...

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Autores principales: Fröhlich, Christopher, Gama, João A., Harms, Klaus, Hirvonen, Viivi H. A., Lund, Bjarte A., van der Kamp, Marc W., Johnsen, Pål J., Samuelsen, Ørjan, Leiros, Hanna-Kirsti S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8092134/
https://www.ncbi.nlm.nih.gov/pubmed/33910990
http://dx.doi.org/10.1128/mSphere.00108-21
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author Fröhlich, Christopher
Gama, João A.
Harms, Klaus
Hirvonen, Viivi H. A.
Lund, Bjarte A.
van der Kamp, Marc W.
Johnsen, Pål J.
Samuelsen, Ørjan
Leiros, Hanna-Kirsti S.
author_facet Fröhlich, Christopher
Gama, João A.
Harms, Klaus
Hirvonen, Viivi H. A.
Lund, Bjarte A.
van der Kamp, Marc W.
Johnsen, Pål J.
Samuelsen, Ørjan
Leiros, Hanna-Kirsti S.
author_sort Fröhlich, Christopher
collection PubMed
description Our current understanding of how low antibiotic concentrations shape the evolution of contemporary β-lactamases is limited. Using the widespread carbapenemase OXA-48, we tested the long-standing hypothesis that selective compartments with low antibiotic concentrations cause standing genetic diversity that could act as a gateway to developing clinical resistance. Here, we subjected Escherichia coli expressing bla(OXA-48), on a clinical plasmid, to experimental evolution at sub-MICs of ceftazidime. We identified and characterized seven single variants of OXA-48. Susceptibility profiles and dose-response curves showed that they increased resistance only marginally. However, in competition experiments at sub-MICs of ceftazidime, they demonstrated strong selectable fitness benefits. Increased resistance was also reflected in elevated catalytic efficiencies toward ceftazidime. These changes are likely caused by enhanced flexibility of the Ω- and β5-β6 loops and fine-tuning of preexisting active site residues. In conclusion, low-level concentrations of β-lactams can drive the evolution of β-lactamases through cryptic phenotypes which may act as stepping-stones toward clinical resistance. IMPORTANCE Very low antibiotic concentrations have been shown to drive the evolution of antimicrobial resistance. While substantial progress has been made to understand the driving role of low concentrations during resistance development for different antimicrobial classes, the importance of β-lactams, the most commonly used antibiotics, is still poorly studied. Here, we shed light on the evolutionary impact of low β-lactam concentrations on the widespread β-lactamase OXA-48. Our data indicate that the exposure to β-lactams at very low concentrations enhances β-lactamase diversity and drives the evolution of β-lactamases by significantly influencing their substrate specificity. Thus, in contrast to high concentrations, low levels of these drugs may substantially contribute to the diversification and divergent evolution of these enzymes, providing a standing genetic diversity that can be selected and mobilized when antibiotic pressure increases.
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spelling pubmed-80921342021-05-11 Cryptic β-Lactamase Evolution Is Driven by Low β-Lactam Concentrations Fröhlich, Christopher Gama, João A. Harms, Klaus Hirvonen, Viivi H. A. Lund, Bjarte A. van der Kamp, Marc W. Johnsen, Pål J. Samuelsen, Ørjan Leiros, Hanna-Kirsti S. mSphere Research Article Our current understanding of how low antibiotic concentrations shape the evolution of contemporary β-lactamases is limited. Using the widespread carbapenemase OXA-48, we tested the long-standing hypothesis that selective compartments with low antibiotic concentrations cause standing genetic diversity that could act as a gateway to developing clinical resistance. Here, we subjected Escherichia coli expressing bla(OXA-48), on a clinical plasmid, to experimental evolution at sub-MICs of ceftazidime. We identified and characterized seven single variants of OXA-48. Susceptibility profiles and dose-response curves showed that they increased resistance only marginally. However, in competition experiments at sub-MICs of ceftazidime, they demonstrated strong selectable fitness benefits. Increased resistance was also reflected in elevated catalytic efficiencies toward ceftazidime. These changes are likely caused by enhanced flexibility of the Ω- and β5-β6 loops and fine-tuning of preexisting active site residues. In conclusion, low-level concentrations of β-lactams can drive the evolution of β-lactamases through cryptic phenotypes which may act as stepping-stones toward clinical resistance. IMPORTANCE Very low antibiotic concentrations have been shown to drive the evolution of antimicrobial resistance. While substantial progress has been made to understand the driving role of low concentrations during resistance development for different antimicrobial classes, the importance of β-lactams, the most commonly used antibiotics, is still poorly studied. Here, we shed light on the evolutionary impact of low β-lactam concentrations on the widespread β-lactamase OXA-48. Our data indicate that the exposure to β-lactams at very low concentrations enhances β-lactamase diversity and drives the evolution of β-lactamases by significantly influencing their substrate specificity. Thus, in contrast to high concentrations, low levels of these drugs may substantially contribute to the diversification and divergent evolution of these enzymes, providing a standing genetic diversity that can be selected and mobilized when antibiotic pressure increases. American Society for Microbiology 2021-04-28 /pmc/articles/PMC8092134/ /pubmed/33910990 http://dx.doi.org/10.1128/mSphere.00108-21 Text en Copyright © 2021 Fröhlich et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Fröhlich, Christopher
Gama, João A.
Harms, Klaus
Hirvonen, Viivi H. A.
Lund, Bjarte A.
van der Kamp, Marc W.
Johnsen, Pål J.
Samuelsen, Ørjan
Leiros, Hanna-Kirsti S.
Cryptic β-Lactamase Evolution Is Driven by Low β-Lactam Concentrations
title Cryptic β-Lactamase Evolution Is Driven by Low β-Lactam Concentrations
title_full Cryptic β-Lactamase Evolution Is Driven by Low β-Lactam Concentrations
title_fullStr Cryptic β-Lactamase Evolution Is Driven by Low β-Lactam Concentrations
title_full_unstemmed Cryptic β-Lactamase Evolution Is Driven by Low β-Lactam Concentrations
title_short Cryptic β-Lactamase Evolution Is Driven by Low β-Lactam Concentrations
title_sort cryptic β-lactamase evolution is driven by low β-lactam concentrations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8092134/
https://www.ncbi.nlm.nih.gov/pubmed/33910990
http://dx.doi.org/10.1128/mSphere.00108-21
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