Related Experiment Videos
Efflux-mediated aminoglycoside and macrolide resistance in Burkholderia pseudomallei
R A Moore1, D DeShazer, S Reckseidler
1Department of Microbiology and Infectious Diseases, University of Calgary Health Sciences Centre, Alberta, Canada.
Abstract:
Burkholderia pseudomallei, the causative agent of melioidosis, is intrinsically resistant to a wide range of antimicrobial agents including beta-lactams, aminoglycosides, macrolides, and polymyxins. We used Tn5-OT182 to mutagenize B. pseudomallei to identify the genes involved in aminoglycoside resistance. We report here on the identification of AmrAB-OprA, a multidrug efflux system in B. pseudomallei which is specific for both aminoglycoside and macrolide antibiotics. We isolated two transposon mutants, RM101 and RM102, which had 8- to 128-fold increases in their susceptibilities to the aminoglycosides streptomycin, gentamicin, neomycin, tobramycin, kanamycin, and spectinomycin. In addition, both mutants, in contrast to the parent, were susceptible to the macrolides erythromycin and clarithromycin but not to the lincosamide clindamycin. Sequencing of the DNA flanking the transposon insertions revealed a putative operon consisting of a resistance, nodulation, division-type transporter, a membrane fusion protein, an outer membrane protein, and a divergently transcribed regulatorprotein. Consistent with the presence of an efflux system, both mutants accumulated [3H] dihydro streptomycin, whereas the parent strain did not. We constructed an amr deletion strain, B. pseudomallei DD503, which was hypersusceptible to aminoglycosides and macrolides and which was used successfully in allelic exchange experiments. These results suggest that an efflux system is a major contributor to the inherent high-level aminoglycoside and macrolide resistance found in B. pseudomallei.
Insights
Researchers identified AmrAB-OprA, a multidrug efflux system in Burkholderia pseudomallei. This system contributes significantly to the bacteria
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- Burkholderia pseudomallei causes melioidosis and exhibits intrinsic resistance to many antibiotics.
- Understanding the mechanisms of this resistance is crucial for developing effective treatments.
Purpose of the Study:
- To identify genes responsible for aminoglycoside resistance in B. pseudomallei.
- To characterize the identified multidrug efflux system and its role in antibiotic resistance.
Main Methods:
- Utilized Tn5-OT182 transposon mutagenesis to generate mutants.
- Performed antibiotic susceptibility testing on wild-type and mutant strains.
- Sequenced flanking DNA to identify the genetic basis of resistance.
- Constructed a gene deletion strain for further validation.
Main Results:
- Identified the AmrAB-OprA efflux system, conferring resistance to aminoglycosides and macrolides.
- Mutants showed increased susceptibility to streptomycin, gentamicin, erythromycin, and clarithromycin.
- Demonstrated impaired [3H] dihydro streptomycin accumulation in mutants, confirming efflux activity.
- A deletion mutant exhibited hypersusceptibility, validating the efflux system's role.
Conclusions:
- The AmrAB-OprA efflux system is a major contributor to B. pseudomallei's inherent resistance to aminoglycosides and macrolides.
- Targeting this efflux system could be a potential strategy to combat melioidosis infections.