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Analysis of antibiotic resistance gene expression in Pseudomonas aeruginosa by quantitative real-time-PCR

机译:实时荧光定量PCR分析铜绿假单胞菌中的抗生素抗性基因表达

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摘要

In Pseudomonas aeruginosa many of the clinically relevant resistance mechanisms result from changes in gene expression as exemplified by the Mex drug efflux pumps, the AmpC beta-lactamase and the carbapenem-specific porin OprD. We used quantitative real-time-PCR to analyze the expression of these genes in susceptible and antibiotic-resistant laboratory and clinical strains. In nalB mutants, which overexpress OprM, we observed a four- to eightfold increase in the expression of mexA, mexB, and oprM genes. MexX and mexY genes were induced eight to 12 times in the presence of 2 mg L-1 tetracycline. The mexC/woprJ and mexE/oprN gene expression levels were increased 30- to 250-fold and 100- to 760-fold in nfxB and nfxC mutants, respectively. We further found that in defined laboratory strains expression levels of ampC and oprD genes paralleled beta-lactamase activity and OprD protein levels, respectively. Our data support the use of quantitative real-time-PCR chain reaction for the analysis of the antimicrobial resistance gene expression in R aeruginosa.
机译:在铜绿假单胞菌中,许多临床相关的耐药机制是由基因表达的变化引起的,如Mex药物外排泵,AmpCβ-内酰胺酶和碳青霉烯特异性孔蛋白OprD。我们使用定量实时PCR来分析这些基因在易感和抗药性的实验室和临床菌株中的表达。在过表达OprM的nalB突变体中,我们观察到mexA,mexB和oprM基因表达增加了4到8倍。在2 mg L-1四环素存在下,MexX和mexY基因被诱导8至12次。在nfxB和nfxC突变体中,mexC / woprJ和mexE / oprN基因表达水平分别提高了30到250倍和100到760倍。我们进一步发现,在确定的实验室菌株中,ampC和oprD基因的表达水平分别平行于β-内酰胺酶活性和OprD蛋白水平。我们的数据支持使用定量实时PCR链反应来分析铜绿假单胞菌中的抗菌素耐药基因表达。

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