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Inhibitor-resistant OXY-2-derived beta-lactamase produced by Klebsiella oxytoca
1Laboratoire de Bactériologie, Faculté de Médecine, 63001 Clermont-Ferrand Cedex, France. Danielle. SIROT@u-clermont1.fr
Abstract:
Klebsiella oxytoca strains are generally moderately resistant to amoxicillin and ticarcillin due to the activities of the chromosomally encoded OXY-1 and OXY-2 class A beta-lactamase families. These enzymes have the ability to hydrolyze not only penicillins but also cephalosporins, including cefuroxime, ceftriaxone, and aztreonam, and are inhibited by clavulanic acid. A Klebsiella oxytoca strain was isolated from a culture of blood from a patient who had been treated with amoxicillin-clavulanate (3 g/day) for 10 days 1 month earlier. This strain harbored an unusual phenotype characterized by resistance to amoxicillin-clavulanate. It produced an OXY-2-type beta-lactamase (pI 6.3), as confirmed by PCR amplification with primers specific for the OXY-2-encoding gene. Gene sequencing revealed a point mutation (A-->G) corresponding to the amino acid substitution Ser-->Gly at position 130. This mutant enzyme was poorly inhibited by inhibitors, and its kinetic constants compared to those of the parent enzyme were characterized by an increased Km value for ticarcillin, with a drastically reduced activity against cephalosporins, as is observed with inhibitor-resistant TEM enzymes. The substitution Ser-->Gly-130 was previously described in the inhibitor-resistant beta-lactamase SHV-10 derived from an SHV-5 variant, but this is the first report of such a mutant in OXY enzymes from K. oxytoca.
Insights
A Klebsiella oxytoca strain developed resistance to amoxicillin-clavulanate due to a new OXY-2 beta-lactamase mutation. This enzyme shows reduced activity against cephalosporins and poor inhibition by clavulanic acid.
Area of Science:
- Microbiology
- Biochemistry
- Genetics
Background:
- Klebsiella oxytoca commonly exhibits moderate resistance to penicillins like amoxicillin and ticarcillin.
- This resistance is mediated by OXY-1 and OXY-2 class A beta-lactamases, which hydrolyze penicillins and cephalosporins but are inhibited by clavulanic acid.
Purpose of the Study:
- To investigate the mechanism behind amoxicillin-clavulanate resistance in a Klebsiella oxytoca strain.
- To characterize the novel beta-lactamase responsible for this resistance phenotype.
Main Methods:
- Isolation and phenotypic characterization of a resistant Klebsiella oxytoca strain.
- Detection and sequencing of the beta-lactamase gene.
- Analysis of enzyme kinetics and inhibitor susceptibility.
Main Results:
- A Klebsiella oxytoca strain resistant to amoxicillin-clavulanate was identified.
- A novel OXY-2 beta-lactamase with a Ser130Gly substitution was detected.
- The mutant enzyme exhibited poor inhibition by clavulanic acid and reduced activity against cephalosporins.
Conclusions:
- The Ser130Gly substitution in OXY-2 beta-lactamase confers resistance to amoxicillin-clavulanate in Klebsiella oxytoca.
- This finding represents the first report of such a mutation in OXY enzymes from K. oxytoca, highlighting evolving antimicrobial resistance mechanisms.