Atichartpongkul Sopapan, Vattanaviboon Paiboon, Wisitkamol Ratiphorn, Jaroensuk Juthamas, Mongkolsuk Skorn, Fuangthong Mayuree
Laboratory of Biotechnology, Chulabhorn Research Institute, Lak Si, Bangkok, Thailand.
Applied Biological Sciences Program, Chulabhorn Graduate Institute, Lak Si, Bangkok, Thailand.
PLoS One. 2016 Aug 25;11(8):e0161982. doi: 10.1371/journal.pone.0161982. eCollection 2016.
Pseudomonas aeruginosa ohrR and ospR are gene homologs encoding oxidant sensing transcription regulators. OspR is known to regulate gpx, encoding a glutathione peroxidase, while OhrR regulates the expression of ohr that encodes an organic peroxide specific peroxiredoxin. Here, we show that ospR mediated gpx expression, like ohrR and ohr, specifically responds to organic hydroperoxides as compared to hydrogen peroxide and superoxide anion. Furthermore, the regulation of these two systems is interconnected. OspR is able to functionally complement an ohrR mutant, i.e. it regulates ohr in an oxidant dependent manner. In an ohrR mutant, in which ohr is derepressed, the induction of gpx expression by organic hydroperoxide is reduced. Likewise, in an ospR mutant, where gpx expression is constitutively high, oxidant dependent induction of ohr expression is reduced. Moreover, in vitro binding assays show that OspR binds the ohr promoter, while OhrR binds the gpx promoter, albeit with lower affinity. The binding of OhrR to the gpx promoter may not be physiologically relevant; however, OspR is shown to mediate oxidant-inducible expression at both promoters. Interestingly, the mechanism of OspR-mediated, oxidant-dependent induction at the two promoters appears to be distinct. OspR required two conserved cysteines (C24 and C134) for oxidant-dependent induction of the gpx promoter, while only C24 is essential at the ohr promoter. Overall, this study illustrates possible connection between two regulatory switches in response to oxidative stress.
铜绿假单胞菌的ohrR和ospR是编码氧化应激感应转录调节因子的基因同源物。已知OspR调节gpx的表达,gpx编码一种谷胱甘肽过氧化物酶,而OhrR调节ohr的表达,ohr编码一种有机过氧化物特异性过氧化物酶。在此,我们表明,与过氧化氢和超氧阴离子相比,ospR介导的gpx表达与ohrR和ohr一样,对有机氢过氧化物有特异性反应。此外,这两个系统的调节是相互关联的。OspR能够在功能上互补ohrR突变体,即它以氧化应激依赖的方式调节ohr。在ohrR突变体中,ohr的表达被去抑制,有机氢过氧化物对gpx表达的诱导作用降低。同样,在ospR突变体中,gpx表达持续高水平,氧化应激依赖的ohr表达诱导作用降低。此外,体外结合试验表明,OspR结合ohr启动子,而OhrR结合gpx启动子,尽管亲和力较低。OhrR与gpx启动子的结合可能不具有生理相关性;然而,OspR被证明能介导两个启动子上的氧化应激诱导表达。有趣的是,OspR介导的两个启动子上的氧化应激依赖诱导机制似乎不同。OspR在gpx启动子的氧化应激依赖诱导中需要两个保守的半胱氨酸(C24和C134),而在ohr启动子上只有C24是必需的。总体而言,这项研究阐明了响应氧化应激的两个调节开关之间可能的联系。