首页> 美国卫生研究院文献>Journal of Bacteriology >Role of the Pseudomonas aeruginosa oxyR-recG Operon in Oxidative Stress Defense and DNA Repair: OxyR-Dependent Regulation of katB-ankB ahpB and ahpC-ahpF
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Role of the Pseudomonas aeruginosa oxyR-recG Operon in Oxidative Stress Defense and DNA Repair: OxyR-Dependent Regulation of katB-ankB ahpB and ahpC-ahpF

机译:铜绿假单胞菌oxyR-recG操纵子在氧化应激防御和DNA修复中的作用:katB-ankBahpB和ahpC-ahpF的OxyR依赖性调节

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摘要

Pseudomonas aeruginosa possesses an extensive armament of genes involved in oxidative stress defense, including katB-ankB, ahpB, and ahpC-ahpF. Transcription of these genes was regulated in response to H2O2, paraquat, or organic peroxides. Expression of katB-lacZ and the observed KatB catalase levels in P. aeruginosa PAO1 were induced up to 250-fold after exposure to oxidative stress-generating compounds. Also, ahpB-lacZ and ahpC-lacZ expression was 90- and 3-fold higher, respectively, upon exposure to paraquat. The dose- and time-response curves revealed that 1 μM paraquat was sufficient for half-maximal activation of each reporter fusion within 5 min of exposure. Expression of these genes was not observed in a ΔoxyR mutant, indicating that OxyR was essential for this response. The transcriptional start sites of katB-ankB, ahpB, and ahpC-ahpF were mapped, putative OxyR-binding sites were identified upstream of the −35 promoter elements, and direct binding of purified OxyR protein to these target promoters was demonstrated. The oxyR mutant was hypersusceptible to oxidative stress-generating agents, including H2O2 and paraquat, in spite of total KatA catalase activity being comparable to that of the wild type. The oxyR phenotype was fully complemented by a plasmid containing the oxyR gene, while any of the katB, ahpB, or ahpCF genes alone resulted in only marginal complementation. Increased katB-lacZ expression and higher KatB catalase levels were detected in a ΔahpCF background compared to wild-type bacteria, suggesting a compensatory function for KatB in the absence of AhpCF. In P. aeruginosa, oxyR is located upstream of recG, encoding a putative DNA repair enzyme. oxyR-lacZ and recG-lacZ reporter activities and oxyR-recG mRNA analysis showed that oxyR and recG are organized in an operon and expressed constitutively with regard to oxidative stress from a single promoter upstream of oxyR. Mutants affected in recG but not oxyR were dramatically impaired in DNA damage repair as measured by sensitivity to UV irradiation. In conclusion, we present evidence that the oxyR-recG locus is essential for oxidative stress defense and for DNA repair.
机译:铜绿假单胞菌具有涉及氧化应激防御的广泛基因武装,包括katB-ankB,ahpB和ahpC-ahpF。这些基因的转录受H2O2,百草枯或有机过氧化物的调节。暴露于产生氧化应激的化合物后,铜绿假单胞菌PAO1中的katB-lacZ表达和所观察到的KatB过氧化氢酶水平被诱导多达250倍。而且,暴露于百草枯后,ahpB-lacZ和ahpC-lacZ的表达分别高90倍和3倍。剂量和时间响应曲线显示,在暴露后5分钟内,1μM百草枯足以使每个报告基因融合体半数最大活化。在ΔoxyR突变体中未观察到这些基因的表达,表明OxyR对于此反应至关重要。映射了katB-ankB,ahpB和ahpC-ahpF的转录起始位点,在-35启动子元件的上游鉴定了假定的OxyR结合位点,并证明了纯化的OxyR蛋白与这些靶启动子的直接结合。尽管总的KatA过氧化氢酶活性与野生型相当,但oxyR突变体对氧化应激产生剂(包括H2O2和百草枯)非常敏感。 oxyR表型被包含oxyR基因的质粒完全互补,而单独的katB, ahpB ahpCF 基因仅导致边缘互补。与野生型细菌相比,在ΔahmCF背景中检测到了 katB-lacZ 表达增加和更高的KatB过氧化氢酶水平,表明在没有AhpCF的情况下KatB具有补偿功能。在 P中。铜绿菌 oxyR 位于 recG 的上游,编码一种假定的DNA修复酶。 oxyR-lacZ recG-lacZ 报告基因活性和 oxyR-recG mRNA分析显示, oxyR recG 在操纵子中组织,并针对来自 oxyR 上游单个启动子的氧化应激进行组成性表达。通过对紫外线照射的敏感性测量,受 recG 影响但不受 oxyR 影响的突变体在DNA损伤修复中显着受损。总之,我们提供的证据表明, oxyR-recG 基因座对于氧化应激防御和DNA修复至关重要。

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