Related Experiment Videos

Inhibitor-resistant OXY-2-derived beta-lactamase produced by Klebsiella oxytoca

D Sirot1, R Labia, P Pouedras

  • 1Laboratoire de Bactériologie, Faculté de Médecine, 63001 Clermont-Ferrand Cedex, France. Danielle. SIROT@u-clermont1.fr

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.

Related Concept Videos