Moore R A, DeShazer D, Reckseidler S, Weissman A, Woods D E
Department of Microbiology and Infectious Diseases, University of Calgary Health Sciences Centre, Alberta, Canada.
Antimicrob Agents Chemother. 1999 Mar;43(3):465-70. doi: 10.1128/AAC.43.3.465.
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.
类鼻疽杆菌是类鼻疽病的病原体,对包括β-内酰胺类、氨基糖苷类、大环内酯类和多粘菌素在内的多种抗菌药物具有内在抗性。我们使用Tn5-OT182对类鼻疽杆菌进行诱变,以鉴定参与氨基糖苷类抗性的基因。我们在此报告了对AmrAB-OprA的鉴定,它是类鼻疽杆菌中的一种多药外排系统,对氨基糖苷类和大环内酯类抗生素具有特异性。我们分离出两个转座子突变体RM101和RM102,它们对氨基糖苷类抗生素链霉素、庆大霉素、新霉素、妥布霉素、卡那霉素和壮观霉素的敏感性提高了8至128倍。此外,与亲本相比,这两个突变体对大环内酯类抗生素红霉素和克拉霉素敏感,但对林可酰胺类抗生素克林霉素不敏感。对转座子插入侧翼的DNA进行测序,揭示了一个假定的操纵子,它由一个抗性、结瘤和分裂型转运蛋白、一个膜融合蛋白、一个外膜蛋白和一个反向转录的调节蛋白组成。与存在外排系统一致,两个突变体都积累了[3H]二氢链霉素,但亲本菌株没有。我们构建了一个amr缺失菌株类鼻疽杆菌DD503,它对氨基糖苷类和大环内酯类抗生素高度敏感,并成功用于等位基因交换实验。这些结果表明,外排系统是类鼻疽杆菌固有高水平氨基糖苷类和大环内酯类抗性的主要原因。