首页> 外文期刊>Frontiers in Cellular and Infection Microbiology >Global Proteomics Revealed Klebsiella pneumoniae Induced Autophagy and Oxidative Stress in Caenorhabditis elegans by Inhibiting PI3K/AKT/mTOR Pathway during Infection
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Global Proteomics Revealed Klebsiella pneumoniae Induced Autophagy and Oxidative Stress in Caenorhabditis elegans by Inhibiting PI3K/AKT/mTOR Pathway during Infection

机译:全球蛋白质组学揭示了肺炎克雷伯菌在感染过程中通过抑制PI3K / AKT / mTOR途径诱导了秀丽隐杆线虫的自噬和氧化应激。

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The enterobacterium, Klebsiella pneumoniae invades the intestinal epithelium of humans by interfering with multiple host cell response. To uncover a system-level overview of host response during infection, we analyzed the global dynamics of protein profiling in Caenorhabditis elegans using quantitative proteomics approach. Comparison of protein samples of nematodes exposed to K. pneumoniae for 12, 24 and 36 h by 2DE revealed several changes in host proteome. A total of 266 host-encoded proteins were identified by 2DE MALDI-MS/MS and LC-MS/MS and the interacting partners of the identified proteins were predicted by STRING 10.0 analysis. In order to understand the interacting partners of regulatory proteins with similar or close pI ranges, a liquid IEF was performed and the isolated fractions containing proteins were identified by LC-MS/MS. Functional bioinformatics analysis on identified proteins deciphered that they were mostly related to the metabolism, dauer formation, apoptosis, endocytosis, signal transduction, translation, developmental and reproduction process. Gene enrichment analysis suggested that the metabolic process as the most overrepresented pathway regulated against K. pneumoniae infection. The dauer-like formation in infected C. elegans along with intestinal atrophy and ROS during the physiological analysis indicated that the regulation of metabolic pathway is probably through the involvement of mTOR. Immunoblot analysis supported the above notion that the K. pneumoniae infection induced protein mis-folding in host by involving PI3Kinase/AKT-1/mTOR mediated pathway. Furthermore, the susceptibility of pdi-2, akt-1 and mTOR C. elegans mutants confirmed the role and involvement of PI3K/AKT/mTOR pathway in mediating protein mis-folding which appear to be translating the vulnerability of host defense towards K. pneumoniae infection.
机译:肠杆菌肺炎克雷伯氏菌通过干扰多种宿主细胞反应,侵入人的肠上皮。为了揭示感染期间宿主反应的系统级概述,我们使用定量蛋白质组学方法分析了秀丽隐杆线虫中蛋白质谱的全球动态。通过2DE对暴露于肺炎克雷伯菌12、24和36 h的线虫的蛋白质样品进行比较,发现宿主蛋白质组发生了一些变化。通过2DE MALDI-MS / MS和LC-MS / MS鉴定出总共266种宿主编码蛋白,并通过STRING 10.0分析预测了鉴定出的蛋白的相互作用伴侣。为了了解具有相似或接近pI范围的调节蛋白的相互作用伴侣,进行了液态IEF,并通过LC-MS / MS鉴定了包含蛋白的分离级分。对鉴定出的蛋白质进行功能性生物信息学分析后发现,它们主要与代谢,dauer形成,细胞凋亡,内吞作用,信号转导,翻译,发育和繁殖过程有关。基因富集分析表明,代谢过程是肺炎克雷伯菌感染的最常代表的途径。在生理分析过程中,感染的秀丽隐杆线虫中的dauer样形成以及肠道萎缩和ROS表明,代谢途径的调控可能是通过mTOR参与。免疫印迹分析支持以上观点,即肺炎克雷伯菌感染通过参与PI3Kinase / AKT-1 / mTOR介导的途径在宿主中诱导蛋白质错误折叠。此外,pdi-2,akt-1和mTOR秀丽隐杆线虫突变体的易感性证实了PI3K / AKT / mTOR途径在介导蛋白质错误折叠中的作用和参与,这似乎将宿主防御对肺炎克雷伯菌的脆弱性转化了感染。

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