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A tripeptide deletion in the R2 loop of the class C beta-lactamase enzyme FOX-4 impairs cefoxitin hydrolysis and slightly increases susceptibility to beta-lactamase inhibitors.
- Source :
-
The Journal of antimicrobial chemotherapy [J Antimicrob Chemother] 2010 Jun; Vol. 65 (6), pp. 1187-94. Date of Electronic Publication: 2010 Apr 09. - Publication Year :
- 2010
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Abstract
- Objectives: A natural variant of the AmpC enzyme from Escherichia coli HKY28 with a tripeptide deletion (Gly-286/Ser-287/Asp-288) was recently described. The isolate produced an inhibitor-sensitive AmpC beta-lactamase variant that also conferred higher than usual levels of resistance to ceftazidime in the E. coli host. To demonstrate whether this is true in other class C beta-lactamase enzymes, we deleted the equivalent tripeptide in the FOX-4 plasmid-mediated class C beta-lactamase.<br />Methods: By site-directed mutagenesis, we deleted the tripeptide Gly-306/Asn-307/Ser-308 of FOX-4, thus generating FOX-4(DeltaGNS). The enzymes (FOX-4 wild-type and DeltaGNS) were purified and kinetic parameters (kcat, Km, kcat/Km) as well as IC50 values of several beta-lactams were assessed. Modelling studies were also performed.<br />Results: FOX-4(DeltaGNS) did not increase the catalytic efficiency towards ceftazidime, although it conferred a slight increase in the susceptibility to beta-lactamase inhibitors. There was also a noteworthy decrease in the cefoxitin MIC with the FOX-4(DeltaGNS) mutant (from 512 to 16 mg/L) as well as a 10-fold decrease in kcat/Km towards imipenem, which revealed specific structural features.<br />Conclusions: Although deletions in the R2-loop are able to extend the substrate spectrum of class C enzymes, the present results do not confirm this hypothesis in FOX-4. The FOX-4 R2 site would already be wide enough to accommodate antibiotic molecules, and thus any amino acid replacement or deletion at this location would not affect the hydrolytic efficiency towards beta-lactams and would have a less drastic effect on the susceptibility to beta-lactamase inhibitors.
- Subjects :
- Amino Acid Sequence
Escherichia coli enzymology
Escherichia coli Proteins antagonists & inhibitors
Humans
Inhibitory Concentration 50
Kinetics
Microbial Sensitivity Tests
Models, Molecular
Molecular Sequence Data
Mutagenesis, Site-Directed
Mutant Proteins antagonists & inhibitors
Mutant Proteins genetics
Mutant Proteins isolation & purification
Mutant Proteins metabolism
Plasmids
Protein Structure, Tertiary
Sequence Alignment
beta-Lactamase Inhibitors
Cefoxitin metabolism
Enzyme Inhibitors pharmacology
Escherichia coli Proteins genetics
Escherichia coli Proteins metabolism
Sequence Deletion
beta-Lactamases genetics
beta-Lactamases metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1460-2091
- Volume :
- 65
- Issue :
- 6
- Database :
- MEDLINE
- Journal :
- The Journal of antimicrobial chemotherapy
- Publication Type :
- Academic Journal
- Accession number :
- 20382725
- Full Text :
- https://doi.org/10.1093/jac/dkq115