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Legionella pneumophila Transcriptional Response following Exposure to CuO Nanoparticles

机译:暴露于CuO纳米颗粒后的嗜肺军团菌转录反应

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Copper ions are an effective antimicrobial agent used to control Legionnaires' disease and Pontiac fever arising from institutional drinking water systems. Here, we present data on an alternative bactericidal agent, copper oxide nanoparticles (CuO-NPs), and its efficacy on Legionella pneumophila . In broth cultures, the CuO-NPs caused growth inhibition, which appeared to be concentration and exposure time dependent. The transcriptomic response of L. pneumophila to CuO-NP exposure was investigated by using a whole-genome microarray. The expression of genes involved in metabolism, transcription, translation, DNA replication and repair, and unknown/hypothetical proteins was significantly affected by exposure to CuO-NPs. In addition, expression of 21 virulence genes was also affected by exposure to CuO-NP and further evaluated by quantitative reverse transcription-PCR (qRT-PCR). Some virulence gene responses occurred immediately and transiently after addition of CuO-NPs to the cells and faded rapidly ( icmV , icmW , lepA ), while expression of other genes increased within 6 h ( ceg29 , legLC8 , legP , lem19 , lem24 , lpg1689 , and rtxA ), 12 h ( cegC1 , dotA , enhC , htpX , icmE , pvcA , and sidF ), and 24 h ( legP , lem19 , and ceg19 ), but for most of the genes tested, expression was reduced after 24 h of exposure. Genes like ceg29 and rtxA appeared to be the most responsive to CuO-NP exposures and along with other genes identified in this study may prove useful to monitor and manage the impact of drinking water disinfection on L. pneumophila .
机译:铜离子是一种有效的抗菌剂,用于控制机构饮用水系统引起的退伍军人病和庞蒂亚克热。在这里,我们介绍了有关替代杀菌剂,氧化铜纳米颗粒(CuO-NPs)的数据及其对嗜肺军团菌的功效。在肉汤培养物中,CuO-NPs引起生长抑制,这似乎与浓度和暴露时间有关。通过使用全基因组微阵列研究了嗜肺乳杆菌对CuO-NP暴露的转录组反应。与代谢,转录,翻译,DNA复制和修复有关的基因的表达以及未知/假设的蛋白质都受到暴露于CuO-NPs的显着影响。此外,暴露于CuO-NP还会影响21个毒力基因的表达,并通过定量逆转录PCR(qRT-PCR)进行进一步评估。在向细胞中添加CuO-NP后,一些毒性基因反应立即发生并短暂发生并迅速消失(icmV,icmW,lepA),而其他基因的表达在6 h内增加(ceg29,legLC8,legP,lem19,lem24,lpg1689,和rtxA),12 h(cegC1,dotA,enhC,htpX,icmE,pvcA和sidF)和24 h(legP,lem19和ceg19),但是对于大多数测试的基因,在24 h接触。像ceg29和rtxA这样的基因似乎对CuO-NP暴露的响应最强,并且与本研究中鉴定出的其他基因一起可能证明对监测和管理饮用水消毒对肺炎链球菌的影响很有用。

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