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Roles of RcsA, an AhpD Family Protein, in Reactive Chlorine Stress Resistance and Virulence in Pseudomonas aeruginosa

机译:RCSA,AHPD家族蛋白质,在铜绿假单胞菌的反应性氯胁迫性和毒力中的作用

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Reactive chlorine species (RCS), particularly hypochlorous acid (HOCl), are powerful antimicrobial oxidants generated by biological pathways and chemical syntheses. Pseudomonas aeruginosa is an important opportunistic pathogen that has adapted mechanisms for protection and survival in harsh environments, including RCS exposure. Based on previous transcriptomic studies of HOCl exposure in P. aeruginosa , we found that the expression of PA0565 , or rcsA , which encodes an alkyl hydroperoxidase D-like protein, exhibited the highest induction among the RCS-induced genes. In this study, rcsA expression was dominant under HOCl stress and greatly increased under HOCl-related stress conditions. Functional analysis of RcsA showed that the distinguishing core amino acid residues Cys60, Cys63, and His67 were required for the degradation of sodium hypochlorite (NaOCl), suggesting an extended motif in the AhpD family. After allelic exchange mutagenesis in the P. aeruginosa rcsA , the P. aeruginosa rcsA deletion mutant showed significantly decreased HOCl resistance. Ectopic expression of P. aeruginosa rcsA led to significantly increased NaOCl resistance in Escherichia coli . Moreover, the pathogenicity of the rcsA mutant decreased dramatically in both Caenorhabditis elegans and Drosophila melanogaster host model systems compared to the wild type (WT). Finally, the Cys60, Cys63, and His67 variants of RcsA were unsuccessful at complementing phenotypes of the rcsA mutant. Overall, our data indicate the importance of P. aeruginosa RcsA in defense against HOCl stress under disinfections and during infections of hosts, which involves the catalytic Cys60, Cys63, and His67 residues.IMPORTANCE Pseudomonas aeruginosa is a common pathogen that is a major cause of serious infections in many hosts. Hypochlorous acid (HOCl) is a potent antimicrobial agent found in household bleach and is a widely used disinfectant. P. aeruginosa has evolved adaptive mechanisms for protection and survival during HOCl exposure. We identified P. aeruginosa rcsA as a HOCl-responsive gene encoding an antioxidant protein that may be involved in HOCl degradation. RcsA has a distinguishing core motif containing functional Cys60, Cys63, and His67 residues. P. aeruginosa rcsA plays an important role in bleach tolerance, with expression of P. aeruginosa rcsA in Escherichia coli also conferring HOCl resistance. Interestingly, RcsA is required for full virulence in worm and fruit fly infection models, indicating a correlation between mechanisms of bleach toxicity and host immunity during infection. This provides new insights into the mechanisms used by P. aeruginosa to persist in harsh environments such as hospitals.
机译:反应性氯物质(RCS),特别是次氯酸(HOCL)是由生物途径和化学合成产生的强烈抗微生物氧化剂。假单胞菌铜绿假单胞菌是一种重要的机会主义病原体,适用于在恶劣环境中保护和生存的机制,包括RCS暴露。基于P.铜绿假单胞菌中Hocl暴露的先前转录组研究,我们发现PA0565或RCSA的表达,它们编码烷基氢过氧化酶D样蛋白,在RCS诱导的基因中表现出最高的诱导。在本研究中,RCSA表达在HOCL胁迫下显着,并且在HOCL相关的应激条件下大大增加。 RCSA的功能分析表明,次氯酸钠(NAOCL)的降解需要区分核氨基酸残基CyS60,Cys63和His67,表明AHPD家族中的延长基序。在P.铜绿假单胞菌RCSA中的等位基因交换诱变之后,P.铜绿假单胞菌RCSA缺失突变体显示出显着降低的HOCl抗性。 P.铜绿假单胞菌RCSA的异位表达导致大肠杆菌中的耐菌耐药性显着增加。此外,与野生型(WT)相比,Caenorhabditis的胶带杆菌和果蝇杆菌和果蝇Melanogaster宿主模型系统致病性显着降低。最后,Cys60,Cys63和RCSA的67个变体在RCSA突变体的补充表型上不成功。总体而言,我们的数据表明P. Aeruginosa RCSA在对消毒时和宿主感染期间对肺部肺部压力进行防御的重要性,这涉及催化Cys60,Cys63和His67残基.ImportancePseudomonas铜绿假单胞菌是一种常见的病原体许多主人的严重感染。次氯酸(HOCL)是一种在家庭漂白剂中发现的有效的抗微生物剂,是广泛使用的消毒剂。 P. Aeruginosa在Hocl暴露过程中已经进化了保护和存活的适应性机制。我们将P.铜绿假单胞菌RCSA鉴定为编码可参与HoCl降解的抗氧化蛋白的Hocl响应基因。 RCSA具有含有功能Cys60,Cys63和His67残基的区别核心图案。铜绿假单胞菌rcsa在漂白耐受性中起重要作用,表达P.铜绿假单胞菌RCSA在大肠杆菌中也赋予Hocl抗性。有趣的是,RCSA是蠕虫和果蝇感染模型的完全毒力所必需的,表明感染过程中漂白毒性和宿主免疫的机制之间的相关性。这为P. Aeruginosa使用的机制提供了新的见解,以持续在医院等恶劣环境中。

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