Mechanisms of Resistance to Imipenem and Ampicillin in Enterococcus faecalis
Open Access
- 1 July 2005
- journal article
- research article
- Published by American Society for Microbiology in Antimicrobial Agents and Chemotherapy
- Vol. 49 (7), 2954-2958
- https://doi.org/10.1128/aac.49.7.2954-2958.2005
Abstract
We found ampicillin- and imipenem-resistant isolates of vanA-possessing Enterococcus faecalis with MICs of 8 to 16 μg/ml and 4 to 32 μg/ml, respectively. There have been few reports about penicillin- and imipenem-resistant E. faecalis. Two mechanisms of beta-lactam resistance in E. faecalis, the production of beta-lactamase and the overproduction of penicillin-binding proteins (PBPs), have been reported. The resistant isolates in the current study did not produce any beta-lactamases and analysis of the PBPs showed no overproduction. However, the affinities of PBP4 for beta-lactams in the resistant strains were lower than those of susceptible strains but the affinities of other PBPs for beta-lactams did not change. Accordingly, whole pbp4 fragments from these resistant isolates were sequenced. Two amino acid substitutions at positions 520 and 605 were observed in the highly resistant strains compared to the susceptible ones, Pro520Ser and Tyr605His, and a single Tyr605His amino acid substitution was found in the low-resistance strains. These two point mutations exist in the region between the active-site-defining motifs SDN and KTG of the penicillin-binding domain, the main target of beta-lactams. A strong correlation was seen between these substitutions and decreasing affinities of PBP4 to beta-lactams. In E. faecalis, resistance due to mutations in PBPs has not been reported, though it has in Enterococcus faecium. Our results suggest that development of high-level resistance to penicillins and imipenem depends on point mutations of PBP4 at positions 520 and 605.Keywords
This publication has 48 references indexed in Scilit:
- The PBP 5 synthesis repressor (psr) gene ofEnterococcus hiraeATCC 9790 is substantially longer than previously reportedFEMS Microbiology Letters, 1998
- Intrinsic Penicillin Resistance in EnterococciMicrobial Drug Resistance, 1996
- Glycopeptide-ResistantEnterococcus faeciumOutside Hospitals: A CommentaryMicrobial Drug Resistance, 1995
- Mechanisms of Resistance to Growth Inhibition and Killing by -Lactam Antibiotics in EnterococciClinical Infectious Diseases, 1992
- Bacteremia Due to -Lactamase-Producing Enterococcus faecalis with High-Level Resistance to Gentamicin in a Child with Wiskott-Aldrich SyndromeClinical Infectious Diseases, 1992
- Modification of penicillin-binding proteins of penicillin-resistant mutants of different species of enterococciJournal of Antimicrobial Chemotherapy, 1990
- Plasmid-Mediated Resistance to Vancomycin and Teicoplanin in Enterococcus FaeciumNew England Journal of Medicine, 1988
- One or Two Low Affinity Penicillin-binding Proteins May Be Responsible for the Range of Susceptibility of Enterococcus faecium to BenzylpenicillinMicrobiology, 1985
- Studies on the Mechanism of Intrinsic Resistance to -Lactam Antibiotics in Group D StreptococciMicrobiology, 1983
- Identification of the lethal target of benzylpenicillin in Streptococcus faecalis by in vivo penicillin binding studiesNature, 1980