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首页> 外文期刊>Canadian journal of microbiology >Induction of Pseudomonas aeruginosa fhp and fhpR by reactive oxygen species.
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Induction of Pseudomonas aeruginosa fhp and fhpR by reactive oxygen species.

机译:活性氧诱导铜绿假单胞菌fhp和fhpR。

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摘要

In Pseudomonas aeruginosa, flavohemoglobin (Fhp) and its cognate regulator FhpR (PA2665) form a protective regulatory circuit, which responds to reactive nitrogen species and is also capable of protecting cells against nitrosative stress. Recently, it has been shown that the expression of the fhp promoter is regulated not only by FhpR, but also by two new regulators, PA0779 and PA3697. It has also been suggested that the bacterial flavohemoglobins (flavoHbs) could play a crucial role in the protection of cells against reactive oxygen species (ROS). Therefore, the role and function of the Fhp/FhpR system during oxidative stress were studied by assessing the viability and membrane integrity of P. aeruginosa cells and by analyzing the promoter activities of fhp and fhpR upon exposure to paraquat, hydrogen peroxide, and tert-butyl hydroperoxide, under both aerobic and low-oxygen conditions. The results showed that under aerobic conditions, both fhp and fhpR promoters are induced by ROS generated by the stressors. Thus, the Fhp/FhpR system is implicated in the oxidative stress response. ROS-induced fhp promoter activity was dependent on FhpR, PA0779, and PA3697 regulators. Tert-butyl hydroperoxide-induced fhpR promoter activity was found to be highly repressed by PA0779, and FhpR showed negative autoregulation of its own promoter. Under low-oxygen conditions, the activity of the fhp promoter was not inducible by ROS, but fhpR promoter activity was induced by paraquat, and hydrogen peroxide was repressed in both cases by the regulators PA0779 and PA3697.
机译:在铜绿假单胞菌中,黄素血红蛋白(Fhp)及其同源调节因子FhpR(PA2665)形成保护性调节电路,该电路对活性氮物质作出反应,还能够保护细胞免受亚硝化胁迫。最近,已经表明fhp启动子的表达不仅受FhpR调节,而且受两个新的调节剂PA0779和PA3697调节。也有人提出细菌黄素血球蛋白(flavoHbs)在保护细胞抵抗活性氧(ROS)方面起着至关重要的作用。因此,通过评估铜绿假单胞菌细胞的活力和膜完整性,并通过分析fhp和fhpR在百草枯,过氧化氢和叔丁基醚下的启动子活性,研究了Fhp / FhpR系统在氧化应激过程中的作用和功能。有氧和低氧条件下的氢过氧化丁基。结果表明,在有氧条件下,fhp和fhpR启动子均由应激源产生的ROS诱导。因此,Fhp / FhpR系统与氧化应激反应有关。 ROS诱导的fhp启动子活性取决于FhpR,PA0779和PA3697调节剂。发现叔丁基过氧化氢诱导的fhpR启动子活性被PA0779高度抑制,而FhpR显示出其自身启动子的负自调控。在低氧条件下,ROS不能诱导fhp启动子的活性,但是百草枯可以诱导fhpR启动子的活性,在两种情况下,调节剂PA0779和PA3697都抑制了过氧化氢。

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