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Testing the Role of Multicopy Plasmids in the Evolution of Antibiotic Resistance
Published on: May 2, 2018
A plasmid-chromosome crosstalk in multidrug resistant enterobacteria
Laura Toribio-Celestino1, Alicia Calvo-Villamañán1, Cristina Herencias2,3
1Centro Nacional de Biotecnología (CNB-CSIC), Madrid, Spain.
Antimicrobial resistance plasmids like pOXA-48 can alter bacterial hosts. A specific plasmid-chromosome interaction benefits carbapenem-resistant bacteria, potentially aiding resistance spread in hospitals.
Area of Science:
- Microbiology
- Genetics
- Molecular Biology
Background:
- Conjugative plasmids drive antimicrobial resistance (AMR) evolution in pathogens.
- Plasmid acquisition can impose fitness costs on bacterial hosts, influencing AMR dissemination.
- The pOXA-48 carbapenem resistance plasmid is globally prevalent.
Purpose of the Study:
- To investigate the transcriptomic interactions between the pOXA-48 plasmid and multidrug-resistant (MDR) enterobacteria.
- To identify the mechanisms underlying plasmid-chromosome crosstalk and its impact on bacterial fitness.
Main Methods:
- Transcriptomic analysis of MDR enterobacteria carrying the pOXA-48 plasmid.
- Genetic engineering and CRISPR interference (CRISPRi) gene silencing.
- Characterization of a specific chromosomal operon (pfp and ifp) and its regulation.
Main Results:
- pOXA-48 induced mostly strain-specific transcriptional changes, but common overexpression of a chromosomal operon (pirin and isochorismatase family proteins) in Klebsiella spp. and Citrobacter freundii.
- A pOXA-48-encoded LysR regulator mediates plasmid-chromosome crosstalk.
- Overexpression of the operon conferred a fitness advantage to a pOXA-48-carrying MDR Klebsiella pneumoniae strain.
Conclusions:
- Plasmid-chromosome crosstalk mediated by a LysR regulator can provide a fitness benefit to carbapenem-resistant bacteria.
- This interaction may promote the dissemination of carbapenem resistance in clinical settings.
- Understanding these mechanisms is crucial for combating the spread of antimicrobial resistance.
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