Department of Biomedical and Molecular Sciences, Botterell Hall, Queen's University, Kingston, Ontario, K7L 3N6, Canada.
Present address: London Research and Development Centre, Agriculture and Agri-Food, London, Ontario, Canada.
Microbiology (Reading). 2019 May;165(5):563-571. doi: 10.1099/mic.0.000787. Epub 2019 Mar 5.
Exposure of wild-type (WT) Pseudomonas aeruginosa PAO1 to ZnCl2 (Zn) yielded a concentration-dependent increase in depolarization of the cytoplasmic membrane (CM), an indication that this metal is membrane-damaging. Consistent with this, Zn activated the AmgRS envelope stress-responsive two-component system (TCS) that was previously shown to be activated by and to protect P. aeruginosa from the membrane-damaging effects of aminoglycoside (AG) antibiotics. A mutant lacking amgR showed enhanced Zn-promoted CM perturbation and was Zn-sensitive, an indication that the TCS protected cells from the CM-damaging effects of this metal. In agreement with this, a mutant carrying an AmgRS-activating amgS mutation was less susceptible to Zn-promoted CM perturbation and more tolerant of elevated levels of Zn than WT. AG activation of AmgRS is known to drive expression of the AG resistance-promoting mexXY multidrug efflux operon, and while Zn similarly induced mexXY expression this was independent of AmgRS and reliant on a second TCS implicated in mexXY regulation, ParRS. MexXY did not, however, contribute to Zn resistance or protection from Zn-promoted CM damage. Despite its activation of AmgRS and induction of mexXY, Zn had a minimal impact on the AG resistance of WT P. aeruginosa although, given that Zn-tolerant AmgRS-activated amgS mutant strains are AG resistant, there is still the prospect of this metal promoting AG resistance development in this organism.
野生型(WT)铜绿假单胞菌 PAO1 暴露于 ZnCl2(Zn)中,导致细胞质膜(CM)去极化呈浓度依赖性增加,表明这种金属具有破坏膜的作用。与这一结果一致的是,Zn 激活了 AmgRS 包膜应激反应的双组分系统(TCS),先前的研究表明,该系统被氨基糖苷(AG)抗生素激活,并保护铜绿假单胞菌免受其破坏膜的作用。缺乏 amgR 的突变体表现出增强的 Zn 促进的 CM 扰动,并且对 Zn 敏感,这表明该 TCS 保护细胞免受这种金属对 CM 的破坏作用。与此一致的是,携带 AmgRS 激活 amgS 突变的突变体对 Zn 促进的 CM 扰动的敏感性降低,并且比 WT 更能耐受高水平的 Zn。已知 AG 激活 AmgRS 会驱动 AG 抗性促进的 mexXY 多药外排操纵子的表达,而 Zn 类似地诱导 mexXY 表达,但这与 AmgRS 无关,并且依赖于第二个与 mexXY 调节相关的 TCS,即 ParRS。然而,MEXXY 并未有助于 Zn 抗性或防止 Zn 促进的 CM 损伤。尽管 Zn 激活了 AmgRS 并诱导了 mexXY 的表达,但对 WT 铜绿假单胞菌的 AG 抗性影响很小,尽管具有 Zn 耐受性的 AmgRS 激活的 amgS 突变株具有 AG 抗性,但仍有可能这种金属在该生物体中促进 AG 抗性的发展。