High Salt Cross-Protects Escherichia coli from Antibiotic Treatment through Increasing Efflux Pump Expression.

High Salt Cross-Protects Escherichia coli from Antibiotic Treatment through Increasing Efflux Pump Expression.
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DOI:
10.1128/msphere.00095-18
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发表时间:
2018-04-25
期刊:
影响因子:
4.8
通讯作者:
Dai X
Dai X
中科院分区:
生物学2区
文献类型:
--
作者:
Zhu M;Dai X

文献摘要

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当细菌面临抗生素治疗时,环境压力往往同时发生。我们提供了一个明确的例子,即自然应激条件(高盐)可以通过触发细菌应激反应程序(AcrAB-TolC外排泵表达升高)来交叉保护细菌免受抗生素治疗。我们的研究强调了在调查抗生素敏感性和应用抗菌治疗时考虑细菌环境压力共同发生的重要性。当细菌在人体内遇到抗生素治疗时,环境压力通常会同时发生。细胞对环境应激的反应可以改变细菌的整体基因表达模式。然而,细胞应激反应和抗生素敏感性之间的关系仍然知之甚少。在这里,我们研究了高盐(人体内一种重要的环境应激条件)对细菌对抗生素敏感性的影响。我们发现,高盐降低了大肠杆菌对四环素和氯霉素的敏感性,导致交叉保护效应。交叉保护作用源于高盐条件下AcrAB-TolC外排泵表达水平的增加。我们的研究表明,应激诱导的基因表达改变可以交叉保护细菌免受抗生素治疗,因此在调查抗生素敏感性和应用抗菌治疗时应予以考虑。当细菌面临抗生素治疗时,环境压力通常会同时发生。我们提供了一个明确的例子,即自然应激条件(高盐)可以通过触发细菌应激反应程序(AcrAB-TolC外排泵表达升高)来交叉保护细菌免受抗生素治疗。我们的研究强调了在调查抗生素敏感性和应用抗菌治疗时考虑细菌环境压力共同发生的重要性。
Environmental stresses often co-occur when bacteria confront antibiotic treatment. We provide a clear example that a natural stress condition (high salt) can cross-protect bacteria from antibiotic treatment by triggering the bacterial stress response program (elevated AcrAB-TolC efflux pump expression). Our study highlights the importance of taking the co-occurrence of bacterial environmental stresses into consideration when investigating antibiotic susceptibility and applying antimicrobial treatment. Environmental stresses often co-occur when bacteria encounter antibiotic treatment inside the human body. The cellular response to environmental stressors can alter the global gene expression pattern of bacteria. However, the relationship between the cellular stress response and antibiotic susceptibility remains poorly understood. Here we studied the effect of high salt, an important environmental stress condition inside the human body, on bacterial susceptibility to antibiotics. We found that high salt reduces the susceptibility of Escherichia coli to tetracycline and chloramphenicol, leading to a cross-protection effect. The cross-protection effect originates from the increased AcrAB-TolC efflux pump expression level under high-salt conditions. Our study demonstrates that stress-induced gene expression alterations can cross-protect bacteria from antibiotic treatment and should thus be considered when investigating antibiotic susceptibility and applying antimicrobial treatment. IMPORTANCE Environmental stresses often co-occur when bacteria confront antibiotic treatment. We provide a clear example that a natural stress condition (high salt) can cross-protect bacteria from antibiotic treatment by triggering the bacterial stress response program (elevated AcrAB-TolC efflux pump expression). Our study highlights the importance of taking the co-occurrence of bacterial environmental stresses into consideration when investigating antibiotic susceptibility and applying antimicrobial treatment.