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Proteomic characterization of persisters in Enterococcus faecium
Charlotte Le Pont1, Benoît Bernay2, Mattéo Gérard1
1UNICAEN, Univ Rouen Normandie, INSERM, DYNAMICURE UMR 1311, Caen, F-14000, France.
Background:
Enterococcus faecium is a Gram-positive bacterium, naturally present in the human intestinal microbiota, but is also an opportunistic pathogen responsible for healthcare-associated infections. Persisters are individuals of a subpopulation able to survive by arrest of growth coping with conditions that are lethal for the rest of the population. These persistent cells can grow again when the stress disappears from their environment and can cause relapses.
Results:
In this study, we highlighted that ciprofloxacin (10-fold the MIC) led to the formation of persister cells of E. faecium. The kill curve was typically biphasic with an initial drop of survival (more than 2 orders of magnitude reduction) followed by a constant bacterial count. Growth curves and antimicrobial susceptibility tests of these persisters were similar to those of the original cells. In addition, by genomic analyses, we confirmed that the persisters were genotypically identical to the wild type. Comparative proteomic analysis revealed that 56 proteins have significantly different abundances in persisters compared to cells harvested before the addition of stressing agent. Most of them were related to energetic metabolisms, some polypeptides were involved in transcription regulation, and seven were stress proteins like CspA, PrsA, ClpX and particularly enzymes linked to the oxidative stress response.
Conclusions:
This work provided evidences that the pathogen E. faecium was able to enter a state of persister that may have an impact in chronic infections and relapses. Moreover, putative key effectors of this phenotypical behavior were identified by proteomic approach.
Insights
The opportunistic pathogen Enterococcus faecium forms persister cells when exposed to ciprofloxacin, a survival mechanism potentially driving chronic infections and relapses. Proteomics identified key proteins involved in this stress response.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Antimicrobial Resistance
Background:
- Enterococcus faecium is a Gram-positive bacterium found in the gut microbiota.
- It is also an opportunistic pathogen causing healthcare-associated infections.
- Persister cells are a subpopulation that survives lethal conditions by arresting growth.
Purpose of the Study:
- To investigate the formation of persister cells in Enterococcus faecium.
- To identify molecular mechanisms underlying persister cell formation.
Main Methods:
- Induction of persister cells using ciprofloxacin.
- Kill curve analysis to assess bacterial survival.
- Growth curves and antimicrobial susceptibility testing of persisters.
- Genomic and comparative proteomic analyses.
Main Results:
- Ciprofloxacin induced persister cell formation in E. faecium, characterized by biphasic kill curves.
- Persisters were genotypically identical to wild-type cells but showed altered protein abundances.
- Proteomic analysis revealed changes in proteins related to energy metabolism, transcription regulation, and stress response, including oxidative stress.
Conclusions:
- Enterococcus faecium can enter a persister state, contributing to chronic infections and relapses.
- Proteomic analysis identified potential key effectors of this phenotypical persister behavior.
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