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首页> 外文期刊>BMC Genomics >Label-free proteomic analysis to confirm the predicted proteome of Corynebacterium pseudotuberculosis under nitrosative stress mediated by nitric oxide
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Label-free proteomic analysis to confirm the predicted proteome of Corynebacterium pseudotuberculosis under nitrosative stress mediated by nitric oxide

机译:一氧化碳介导的亚硝化胁迫下无标记蛋白质组学分析,以确认假结核棒状杆菌的预测蛋白质组

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Background Corynebacterium pseudotuberculosis biovar ovis is a facultative intracellular pathogen, and the etiological agent of caseous lymphadenitis in small ruminants. During the infection process, the bacterium is subjected to several stress conditions, including nitrosative stress, which is caused by nitric oxide (NO). In silico analysis of the genome of C. pseudotuberculosis ovis 1002 predicted several genes that could influence the resistance of this pathogen to nitrosative stress. Here, we applied high-throughput proteomics using high definition mass spectrometry to characterize the functional genome of C. pseudotuberculosis ovis 1002 in the presence of NO-donor Diethylenetriamineitric oxide adduct (DETA/NO), with the aim of identifying proteins involved in nitrosative stress resistance. Results We characterized 835 proteins, representing approximately 41% of the predicted proteome of C. pseudotuberculosis ovis 1002, following exposure to nitrosative stress. In total, 102 proteins were exclusive to the proteome of DETA/NO-induced cells, and a further 58 proteins were differentially regulated between the DETA/NO and control conditions. An interactomic analysis of the differential proteome of C. pseudotuberculosis in response to nitrosative stress was also performed. Our proteomic data set suggested the activation of both a general stress response and a specific nitrosative stress response, as well as changes in proteins involved in cellular metabolism, detoxification, transcriptional regulation, and DNA synthesis and repair. Conclusions Our proteomic analysis validated previously-determined in silico data for C. pseudotuberculosis ovis 1002. In addition, proteomic screening performed in the presence of NO enabled the identification of a set of factors that can influence the resistance and survival of C. pseudotuberculosis during exposure to nitrosative stress.
机译:背景假结核棒杆菌是一种兼性的细胞内病原体,是小反刍动物干酪性淋巴结炎的病原体。在感染过程中,细菌会经受多种压力条件,包括由一氧化氮(NO)引起的亚硝化压力。在对假结核杆菌的基因组进行的计算机分析中,ovis 1002预测了几种可能影响该病原体对亚硝化胁迫抗性的基因。在这里,我们使用高通量质谱技术应用高通量蛋白质组学,在存在NO供体二亚乙基三胺/一氧化氮加合物(DETA / NO)的情况下,鉴定了C. pseudotuberculosis ovis 1002的功能基因组,目的是鉴定参与其中的蛋白质抗亚硝化胁迫。结果在暴露于亚硝化胁迫后,我们鉴定了8​​35种蛋白质,约占假结核隐球菌1002预测蛋白质组的41%。总共有102种蛋白质是DETA / NO诱导的细胞蛋白质组所独有的,另外58种蛋白质在DETA / NO和对照条件之间受到差异调节。进行了针对亚硝化胁迫的假结核梭菌差异蛋白质组的相互作用组学分析。我们的蛋白质组数据集表明,一般应激反应和特定的亚硝化应激反应都可以激活,以及参与细胞代谢,排毒,转录调节以及DNA合成和修复的蛋白质变化。结论我们的蛋白质组学分析验证了先前确定的猪假单胞菌1002的计算机模拟数据。此外,在没有NO的情况下进行的蛋白质组学筛选能够鉴定出一系列因素,这些因素可以影响暴露期间假单胞菌的耐药性和存活率。亚硝化胁迫。

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