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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Expression of Pseudomonas aeruginosa multidrug efflux pumps MexA-MexB-OprM and MexC-MexD-OprJ in a multidrug-sensitive Escherichia coli strain.
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Expression of Pseudomonas aeruginosa multidrug efflux pumps MexA-MexB-OprM and MexC-MexD-OprJ in a multidrug-sensitive Escherichia coli strain.

机译:铜绿假单胞菌多药外排泵MexA-MexB-OprM和MexC-MexD-OprJ在多药敏感性大肠杆菌菌株中的表达。

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摘要

The mexCD-oprJ and mexAB-oprM operons encode components of two distinct multidrug efflux pumps in Pseudomonas aeruginosa. To assess the contribution of individual components to antibiotic resistance and substrate specificity, these operons and their component genes were cloned and expressed in Escherichia coli. Western immunoblotting confirmed expression of the P. aeruginosa efflux pump components in E. coli strains expressing and deficient in the endogenous multidrug efflux system (AcrAB), although only the delta acrAB strain, KZM120, demonstrated increased resistance to antibiotics in the presence of the P. aeruginosa efflux genes. E. coli KZM120 expressing MexAB-OprM showed increased resistance to quinolones, chloramphenicol, erythromycin, azithromycin, sodium dodecyl sulfate (SDS), crystal violet, novobiocin, and, significantly, several beta-lactams, which is reminiscent of the operation of this pump in P. aeruginosa. This confirmed previous suggestions that MexAB-OprM provides a direct contribution to beta-lactam resistance via the efflux of this group of antibiotics. An increase in antibiotic resistance, however, was not observed when MexAB or OprM alone was expressed in KZM120. Thus, despite the fact that beta-lactams act within the periplasm, OprM alone is insufficient to provide resistance to these agents. E. coli KZM120 expressing MexCD-OprJ also showed increased resistance to quinolones, chloramphenicol, macrolides, SDS, and crystal violet, though not to most beta-lactams or novobiocin, again somewhat reminiscent of the antibiotic resistance profile of MexCD-OprJ-expressing strains of P. aeruginosa. Surprisingly, E. coli KZM120 expressing MexCD alone also showed an increase in resistance to these agents, while an OprJ-expressing KZM120 failed to demonstrate any increase in antibiotic resistance. MexCD-mediated resistance, however, was absent in a tolC mutant of KZM120, indicating that MexCD functions in KZM120 in conjunction with TolC, the previously identified outer membrane component of the AcrAB-TolC efflux system. These data confirm that a tripartite efflux pump is necessary for the efflux of all substrate antibiotics and that the P. aeruginosa multidrug efflux pumps are functional and retain their substrate specificity in E. coli.
机译:mexCD-oprJ和mexAB-oprM操纵子编码铜绿假单胞菌中两个不同的多药外排泵的成分。为了评估各个组分对抗生素抗性和底物特异性的贡献,将这些操纵子及其组分基因克隆并在大肠杆菌中表达。 Western免疫印迹证实了表达和缺乏内源多药外排系统(AcrAB)的大肠杆菌菌株中铜绿假单胞菌外排泵组件的表达,尽管只有ΔacrAB菌株KZM120在P的存在下显示出对抗生素的耐药性增加铜绿假单胞菌外排基因。表达MexAB-OprM的大肠杆菌KZM120显示出对喹诺酮,氯霉素,红霉素,阿奇霉素,十二烷基硫酸钠(SDS),结晶紫,新霉素和显着的几种β-内酰胺的耐药性增强,这让人想起了该泵的运行在铜绿假单胞菌中。这证实了以前的建议,即MexAB-OprM通过这组抗生素的外排直接促进了β-内酰胺的耐药性。但是,当在KZM120中单独表达MexAB或OprM时,未观察到抗生素抗性的增加。因此,尽管事实上β-内酰胺在周质中起作用,但仅OprM不足以提供对这些药剂的抗性。表达MexCD-OprJ的大肠杆菌KZM120还显示出对喹诺酮类,氯霉素,大环内酯类,SDS和结晶紫的抗性增强,尽管对大多数β-内酰胺或新霉素没有,但在某种程度上让人联想到表达MexCD-OprJ的菌株的抗药性铜绿假单胞菌。令人惊讶地,仅表达MexCD的大肠杆菌KZM120也显示出对这些试剂的抗性增加,而表达OprJ的KZM120未显示出抗生素抗性的任何增加。但是,MexCD介导的抗性在KZM120的tolC突变体中不存在,这表明MexCD在KZM120中与TolC(先前鉴定的AcrAB-TolC外排系统的外膜成分)结合发挥功能。这些数据证实三方外排泵对于所有底物抗生素的外排是必需的,并且铜绿假单胞菌多药外排泵是功能性的并且在大肠杆菌中保留了它们的底物特异性。

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