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Differential gene expression profiling of porcine epithelial cells infected with three enterotoxigenic Escherichia coli strains

机译:三种感染肠毒素的大肠杆菌感染的猪上皮细胞的差异基因表达谱

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Background Enterotoxigenic Escherichia coli (ETEC) is one of the most important pathogenic bacteria causing severe diarrhoea in human and pigs. In ETEC strains, the fimbrial types F4 and F18 are commonly found differently colonized within the small intestine and cause huge economic losses in the swine industry annually worldwide. To address the underlying mechanism, we performed a transcriptome study of porcine intestinal epithelial cells (IPEC-J2) with and without infection of three representative ETEC strains. Results A total 2443, 3493 and 867 differentially expressed genes were found in IPEC-J2 cells infected with F4ab ETEC (CF4ab), with F4ac ETEC (CF4ac) and with F18ac ETEC (CF18ac) compared to the cells without infection (control), respectively. The number of differentially expressed genes between CF4ab and CF4ac, CF4ab and CF18ac, and CF4ac and CF18ac were 77, 1446 and 1629, respectively. The gene ontology and pathway analysis showed that the differentially expressed genes in CF4abvs control are significantly involved in cell-cycle progress and amino acid metabolism, while the clustered terms of the differentially expressed genes in CF4acvs control comprise immune, inflammation and wounding response and apoptosis as well as cell cycle progress and proteolysis. Differentially expressed genes between CF18acvs control are mainly involved in cell-cycle progression and immune response. Furthermore, fundamental differences were observed in expression levels of immune-related genes among the three ETEC treatments, especially for the important pro-inflammatory molecules, including IL-6, IL-8, TNF-α, CCL20, CXCL2 etc. Conclusions The discovery in this study provides insights into the interaction of porcine intestinal epithelial cells with F4 ETECs and F18 ETEC, respectively. The genes induced by ETECs with F4 versus F18 fimbriae suggest why ETEC with F4 may be more virulent compared to F18 which seems to elicit milder effects.
机译:背景技术产肠毒素的大肠杆菌(ETEC)是引起人和猪严重腹泻的最重要的致病菌之一。在ETEC菌株中,通常在小肠内不同地定植纤维类型F4和F18,每年在全球养猪业中造成巨大的经济损失。为了解决潜在的机制,我们进行了有和没有感染三种代表性ETEC菌株的猪肠道上皮细胞(IPEC-J2)的转录组研究。结果在感染F4ab ETEC(C F4ab ),F4ac ETEC(C F4ac )和F18ac ETEC(C F18ac )分别与未感染的细胞(对照)进行比较。 C F4ab 和C F4ac ,C F4ab 和C F18ac 和C < sub> F4ac 和C F18ac 分别为77、1446和1629。基因本体和通路分析表明,C F4ab vs对照中差异表达的基因明显参与细胞周期进程和氨基酸代谢,而C F4ab 中差异表达基因的聚类术语> F4ac 的控制包括免疫,炎症和创伤反应,细胞凋亡以及细胞周期进程和蛋白水解。 C F18ac 与对照之间的差异表达基因主要参与细胞周期进程和免疫应答。此外,在三种ETEC处理之间,特别是对于重要的促炎分子,包括IL-6,IL-8,TNF-α,CCL20,CXCL2等,在免疫相关基因的表达水平上观察到根本差异。结论在这项研究中,我们深入了解了猪肠道上皮细胞与F4 ETEC和F18 ETEC的相互作用。具有F4和F18菌毛的ETECs诱导的基因表明,为什么具有F4的ETEC可能比F18更具毒力,而F18似乎引起了较轻的作用。

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