首页> 外文期刊>The Journal of Antibiotics: An International Journal >Insight into synergetic mechanisms of tetracycline and the selective serotonin reuptake inhibitor, sertraline, in a tetracycline-resistant strain of Escherichia coli
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Insight into synergetic mechanisms of tetracycline and the selective serotonin reuptake inhibitor, sertraline, in a tetracycline-resistant strain of Escherichia coli

机译:洞察四环素和选择性血清素再摄取抑制剂,塞拉曲林,塞拉氏素,在大肠杆菌的四环素抗性菌株中的协同机制

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摘要

Sertraline, an antidepressive drug, has been reported to inhibit general bacterial efflux pumps. In the present study, we report for the first time a synergistic effect of sertraline and tetracycline in a TetA-encoded tetracycline-resistant strain of Escherichia coli. Synergy between sertraline and tetracycline in an E. coli strain with TetA-mediated tetracycline resistance (E. coli APEC_02) was assessed by the MIC and checkerboard assays. The global transcriptome of E. coli APEC_02 exposed to 1/2 MIC concentrations of sertraline and/or tetracycline was analyzed to elucidate the interaction mechanism between sertraline and tetracycline. The fractional inhibitory concentration index for tetracycline and sertraline in E. coli APEC_02 was 0.5. In addition, in the presence of 1/2 MIC of sertraline, the sensitivity of E. coli APEC_02 to tetracycline could be restored according to clinical standards (from 64 to 4 mg l(-1)). RNA data suggest changes in respiration that is likely to decrease intracellular pH and thereby the proton-motive force, which provides the energy for the tetracycline efflux pump. Furthermore, sertraline and tetracycline may induce a change from oxidation to fermentation in the E. coli, which further decreases pH, resulting in cell death. This study shows that sertraline interacts with tetracycline in a synergistic and AcrAB-ToIC pump-independent manner. The combinational treatment was further shown to induce many changes in the global transcriptome, including altered tetA and tetR expression. The results indicate that sertraline may be used as a helper compound with the aim to reverse tetracycline resistance encoded by tetA.
机译:据报道,塞拉甲酸甲腺嘌呤抑制一般细菌泵泵。在本研究中,我们首次报告了塞拉曲林和四环素在TETA编码的大肠杆菌抗性菌株中的协同作用。通过麦克风和棋盘测定评估具有TETA介导的四环素抗性(大肠杆菌APEC_02)的大肠杆菌菌株中塞拉曲林和四环素之间的协同作用。分析暴露于1/2麦克风和/或四环素的1/2麦克风浓度的大肠杆菌APEC_02的全局转录组,以阐明肉素和四环素之间的相互作用机制。在大肠杆菌APEC_02中四环素和塞拉甲酸甲醛的分数抑制浓度指数为0.5。另外,在塞拉甲簇的1/2麦克风的存在下,可以根据临床标准(从64-4mg(-1))恢复大肠杆菌APEC_02至四环素的敏感性。 RNA数据表明呼吸的变化可能会降低细胞内pH,从而改变质子动力,为四环素流出泵提供能量。此外,塞拉曲林和四环素可以在大肠杆菌中诱导从氧化到发酵的变化,这进一步降低了pH,导致细胞死亡。该研究表明,塞拉曲氏素以四环素以协同和传感的泵自然的方式与四环素相互作用。进一步示出了组合处理,诱导了全局转录组的许多变化,包括改变的TETA和脂肪表达。结果表明,塞拉甲醇可以用作辅助化合物,其目的是反转由TETA编码的四环素抗性。

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