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July 1, 1996Antimicrobial Agents and Chemotherapy136 citationsOpen Access

Identification for mar mutants among quinolone-resistant clinical isolates of Escherichia coli

KMK ManeewannakulSLStuart B. Levy

Key Points

  • To determine whether mutations in the marRAB operon occur in quinolone-resistant clinical Escherichia coli isolates and evaluate their role in multidrug resistance.
  • Screened 23 quinolone-resistant clinical E. coli isolates and selected 8 strains based on constitutive (n=3) or inducible (n=5) mar operon expression.
  • Cloned marR repressor genes into a marO::lacZ transcriptional fusion system to assess repressor activity and sequence mutations.
  • Inactivated the mar locus in confirmed mutant strains using a kanamycin resistance cassette introduced by homologous recombination.
  • Cloned marR genes from all three constitutively expressing strains failed to repress LacZ expression and harbored both deletions and point mutations.
  • Cloned marR genes from the five inducible strains retained wild-type repressor function.
  • Targeted inactivation of the mar locus in the three marR mutant strains successfully reduced resistance to quinolones and multiple other antibiotics.

Abstract

Quinolone-resistant clinical Escherichia coli isolates were examined for mutations in the marRAB operon of the multiple antibiotic resistance (mar) locus. Among 23 strains evaluated, 8 were chosen for further study: 3 that showed relatively high levels of uninduced, i.e., constitutive, expression of the operon and 5 with variable responses to induction by salicylate or tetracyclines. The marR genes, specifying the repressor of the operon, cloned from the three strains constitutively expressing the operon did not reduce the level of expression of beta-galactosidase from a marO::lacZ transcriptional fusion and were therefore mutant; however, marR genes cloned from the five other clinical strains repressed LacZ expression and were wild type. All three mutant marR genes contained more than one mutation: a deletion and a point mutation. Inactivation of the mar locus in the three known marR mutant strains with a kanamycin resistance cassette introduced by homologous recombination reduced resistance to quinolones and multiple antibiotics. These findings indicate that mar operon mutations exist in quinolone-resistant clinical E. coli isolates and contribute to quinolone and multidrug resistance.

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Cite This Study

Maneewannakul et al. (1996) studied this question.

synapsesocial.com/papers/69dea33f077ec87fd1e939b7https://doi.org/10.1128/aac.40.7.1695
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