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Updated: Dec 15, 2025

Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
Penicillin-Resistant, Ampicillin-Susceptible Enterococcus faecalis in Polish Hospitals
Iwona Gawryszewska1, Dorota Żabicka2, Waleria Hryniewicz2
1Department of Molecular Microbiology and National Medicines Institute, Warsaw, Poland.
Abstract:
The objective of this study was to characterize Polish penicillin-resistant, ampicillin-susceptible Enterococcus faecalis (PRASEF), increasingly reported to the National Reference Centre for Susceptibility Testing, Poland, to elucidate the path of emergence of such strains. A total of 136 isolates were examined by antimicrobial susceptibility testing and for the β-lactamase production (cefinase test). The clonality of isolates was established by multilocus sequence typing (MLST) and the penicillin-binding protein pbp4 gene was sequenced to search for putative mutation(s). The presence of pheromone-responsive plasmids was investigated by clumping test and PCR detection of plasmid-specific genes. All Polish PRASEF were multidrug resistant and β-lactamase-negative. MLST assigned isolates mostly to high-risk enterococcal clonal complexes (HIRECCs) 6 (57.4%) and 87 (30.1%), in addition to to CC88 (12.5%). The sequencing of pbp4 revealed mutations upstream of a putative promoter region and amino acid alterations in PBP4, affecting 24 positions and resulting in 30 variants. While production of aggregation substance was observed for 17.6% of isolates, genes of pheromone plasmids were much more commonly detected. However, no conjugal transfer of penicillin resistance was observed. Penicillin resistance in E. faecalis emerges mostly in HiRECCs due to PBP4 overproduction and/or mutations. The acquisition of penicillin resistance by HiRECCs may represent the next step in the evolution of E. faecalis as human nosocomial pathogen.
Insights
Polish penicillin-resistant, ampicillin-susceptible Enterococcus faecalis (PRASEF) strains are multidrug resistant and linked to high-risk clonal complexes. Mutations in the PBP4 gene and plasmid presence contribute to penicillin resistance, potentially driving pathogen evolution.
Area of Science:
- Microbiology
- Genetics
- Antimicrobial Resistance
Background:
- Increasing reports of penicillin-resistant, ampicillin-susceptible Enterococcus faecalis (PRASEF) in Poland.
- Need to understand the emergence and characteristics of these specific strains.
Purpose of the Study:
- Characterize Polish PRASEF isolates.
- Elucidate the emergence pathway of penicillin resistance in Enterococcus faecalis.
Main Methods:
- Antimicrobial susceptibility testing and cefinase test for beta-lactamase production.
- Multilocus sequence typing (MLST) for clonality.
- pbp4 gene sequencing and investigation of pheromone-responsive plasmids.
Main Results:
- All isolates were multidrug resistant and beta-lactamase-negative.
- MLST identified high-risk enterococcal clonal complexes (HIRECCs) 6, 87, and CC88.
- pbp4 mutations and presence of pheromone plasmid genes were detected, but no conjugal transfer of resistance.
Conclusions:
- Penicillin resistance in E. faecalis primarily emerges in HIRECCs.
- PBP4 overproduction and/or mutations are key mechanisms.
- Acquisition of penicillin resistance by HIRECCs may signify an evolutionary step for E. faecalis as a nosocomial pathogen.

