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SmeDEF Multidrug Efflux Pump Contributes to Intrinsic Multidrug Resistance in Stenotrophomonas maltophilia

机译:SmeDEF多药外排泵有助于嗜麦芽窄食单胞菌的内在多药耐药性。

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摘要

Stenotrophomonas maltophilia is an emerging nosocomial pathogen that displays high-level intrinsic resistance to a variety of structurally unrelated antimicrobial agents. Efflux mechanisms are known to contribute to acquired multidrug resistance in this organism, and indeed, one such multidrug efflux system, SmeDEF, was recently identified. Still, the importance of SmeDEF to intrinsic antibiotic resistance in S. maltophilia had not yet been determined. Reverse transcription-PCR confirmed expression of the smeDEF genes in wild-type S. maltophilia, and deletion of smeE or smeF in wild-type strains rendered the mutants hypersusceptible to several antimicrobials, suggesting that SmeDEF contributes to intrinsic antimicrobial resistance in this organism. Expression of smeDEF was also enhanced in an in vitro-selected multidrug-resistant mutant, although deletion of smeF but not of smeE in these mutants compromised antimicrobial resistance. Apparently, hyperexpressed SmeF is capable of functioning with additional multidrug efflux components to promote multidrug resistance in S. maltophilia.
机译:嗜麦芽窄食单胞菌是一种新兴的医院病原体,对多种与结构无关的抗菌剂具有高水平的内在抗性。已知外排机制有助于该生物体中获得的多药耐药性,实际上,最近发现了一种这样的多药外排系统SmeDEF。仍然,尚未确定SmeDEF对嗜麦芽孢杆菌中固有抗生素耐药性的重要性。逆转录-PCR证实了smeDEF基因在野生型嗜麦芽孢杆菌中的表达,以及在野生型菌株中smeE或smeF的缺失使得该突变体对几种抗微生物剂高度敏感,这表明SmeDEF有助于该生物体内的固有抗药性。 smeDEF的表达在体外选择的耐多药突变体中也得到了增强,尽管这些突变体中smeF的缺失而不是smeE的缺失削弱了抗药性。显然,过表达的SmeF能够与其他多药外排成分一起发挥作用,以促进嗜麦芽糖酵母中的多药耐药性。

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