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Substantial Contribution of SmeDEF SmeVWX SmQnr and Heat Shock Response to Fluoroquinolone Resistance in Clinical Isolates of Stenotrophomonas maltophilia

机译:嗜麦芽窄食单胞菌临床分离株中SmeDEFSmeVWXSmQnr和热休克反应对氟喹诺酮耐药的实质性贡献。

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摘要

Stenotrophomonas maltophilia is an emerging multi-drug resistant opportunistic pathogen. Although fluoroquinolones (FQ) are still clinically valuable for the treatment of S. maltophilia infection, an increasing prevalence in FQ resistance has been reported. Overexpression of SmeDEF, SmeVWX, and SmQnr, and de-repressed expression of heat shock response are reported mechanisms responsible for FQ resistance in S. maltophilia; nevertheless, some of these mechanisms are identified from laboratory-constructed mutants, and it remains unclear whether they occur in clinical setting. In this study, we aimed to assess whether these mechanisms contribute substantially to FQ resistance in clinical isolates. Eighteen ciprofloxacin- and levofloxacin-resistant isolates were selected from 125 clinical isolates of S. maltophilia. The expression of smeE, smeW, and Smqnr genes of these isolates was investigated by RT-qPCR. The de-repressed heat shock response was assessed by rpoE expression at 37°C and bacterial viability at 40°C. The contribution of SmeDEF, SmeVWX, and SmQnr, and heat shock response to FQ resistance was evaluated by mutants construction and susceptibility testing. The results demonstrated that simply assessing the overexpression of SmeDEF, SmeVWX, and SmQnr by RT-qPCR may overestimate their contribution to FQ resistance. Simultaneous overexpression of SmeDEF and SmeVWX did not increase the resistance level to their common substrates, but extended the resistance spectrum. Moreover, the de-repressed expression of heat shock response was not observed to contribute to FQ resistance in the clinical isolates of S. maltophilia.
机译:嗜麦芽窄食单胞菌是一种新兴的多药耐药性机会病原体。尽管氟喹诺酮类药物(FQ)在临床上仍可用于治疗嗜麦芽链球菌感染,但已报道FQ耐药性的患病率上升。据报道,SmeDEF,SmeVWX和SmQnr的过表达以及热休克反应的抑制表达是造成嗜麦芽链球菌抗FQ的机制。然而,其中一些机制是从实验室构建的突变体中鉴定出来的,尚不清楚它们是否在临床环境中发生。在这项研究中,我们旨在评估这些机制是否对临床分离株的FQ耐药性有实质性贡献。从125个嗜麦芽孢杆菌的临床分离株中选择了18种对环丙沙星和左氧氟沙星耐药的分离株。通过RT-qPCR研究了这些分离株的smeE,smeW和Smqnr基因的表达。通过在37°C的rpoE表达和在40°C的细菌生存力评估抑制的热激反应。通过突变体构建和敏感性测试评估了SmeDEF,SmeVWX和SmQnr以及热激响应对FQ抗性的贡献。结果表明,仅通过RT-qPCR评估SmeDEF,SmeVWX和SmQnr的过表达可能会高估它们对FQ抗性的贡献。 SmeDEF和SmeVWX同时过表达并没有增加其共同底物的电阻水平,但扩展了电阻谱。此外,未观察到热休克反应的抑制表达有助于嗜麦芽胞菌临床分离株对FQ的抗性。

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