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High-level quinolone resistance is associated with the overexpression of smeVWX in Stenotrophomonas maltophilia clinical isolates

机译:高水平喹诺酮耐药性与嗜麦芽窄食单胞菌临床分离株中smeVWX的过表达有关

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摘要

Stenotrophomonas maltophilia is the only known bacterium in which quinolone-resistant isolates do not present mutations in the genes encoding bacterial topoisomerases. The expression of the intrinsic quinolone resistance elements smeDEF, smeVWX and Smqnr was analysed in 31 clinical S. maltophilia isolates presenting a minimum inhibitory concentration (MIC) range to ciprofloxacin between 0.5 and > 32 mu g/mL; II (35.5%) overexpressed smeDEF, 2 (6.5%) presenting the highest quinolone MICs overexpressed smeVWX and I (3.2%) overexpressed Smqnr. Both strains overexpressing smeVWX presented changes at the Gly266 position of SmeRv, the repressor of smeVWX. Changes at the same position were previously observed in in vitro selected S. maltophilia quinolone-resistant mutants, indicating this amino acid is highly relevant for the activity of SmeRv in repressing smeVWX expression. For the first time SmeVWX overexpression is associated with quinolone resistance of S. maltophilia clinical isolates. Clinical Microbiology and Infection (C) 2015 European Society of Clinical Microbiology and Infectious Diseases. Published by Elsevier Ltd. All rights reserved.
机译:嗜麦芽窄食单胞菌是唯一已知的细菌,其中喹诺酮抗性分离株在编码细菌拓扑异构酶的基因中不出现突变。在31种临床嗜麦芽孢杆菌分离株中分析了内在喹诺酮抗性元素smeDEF,smeVWX和Smqnr的表达,对环丙沙星的最小抑菌浓度(MIC)范围在0.5至> 32μg / mL之间。 II(35.5%)过度表达smeDEF,2(6.5%)呈现最高的喹诺酮类MICs过度表达smeVWX,I(3.2%)过度表达Smqnr。两种过表达smeVWX的菌株在smeVWX的阻遏物SmeRv的Gly266位置均发生了变化。先前在体外选择的嗜麦芽孢杆菌喹诺酮抗性突变体中观察到相同位置的变化,表明该氨基酸与SmeRv抑制smeVWX表达的活性高度相关。 SmeVWX的首次过量表达与嗜麦芽胞杆菌临床分离株的喹诺酮耐药性有关。临床微生物学和感染(C)2015年欧洲临床微生物学和传染病学会。由Elsevier Ltd.出版。保留所有权利。

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