首页> 美国卫生研究院文献>Advances in Virology >Apoptotic and Early Innate Immune Responses to PB1-F2 Protein of Influenza A Viruses Belonging to Different Subtypes in Human Lung Epithelial A549 Cells
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Apoptotic and Early Innate Immune Responses to PB1-F2 Protein of Influenza A Viruses Belonging to Different Subtypes in Human Lung Epithelial A549 Cells

机译:对人肺上皮A549细胞中不同亚型的甲型流感病毒PB1-F2蛋白的凋亡和早期先天免疫应答

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摘要

PB1-F2 is a multifunctional protein and contributes to the pathogenicity of influenza A viruses. PB1-F2 is known to have strain and cell specific functions. In this study we have investigated the apoptotic and inflammatory responses of PB1-F2 protein from influenza viruses of diverse pathogenicities in A549 lung epithelial cells. Overexpression of PB1-F2 resulted in apoptosis and heightened inflammatory response in A549 cells. Comparison revealed that the response varied with each subtype. PB1-F2 protein from highly pathogenic H5N1 virus induced least apoptosis but maximum inflammatory response. Results indicated that apoptosis was mediated through death receptor ligands TNFα and TRAIL via Caspase 8 activation. Significant induction of cytokines/chemokines CXCL10, CCL5, CCL2, IFNα, and IL-6 was noted in A549 cells transfected with PB1-F2 gene construct of 2008 West Bengal H5N1 virus (H5N1-WB). On the contrary, PB1-F2 construct from 2007 highly pathogenic H5N1 isolate (H5N1-M) with truncated N-terminal region did not evoke as exuberant inflammatory response as the other H5N1-WB with full length PB1-F2, signifying the importance of N-terminal region of PB1-F2. Sequence analysis revealed that PB1-F2 proteins derived from different influenza viruses varied at multiple amino acid positions. The secondary structure prediction showed each of the PB1-F2 proteins had distinct helix-loop-helix structure. Thus, our data substantiate the notion that the contribution of PB1-F2 to influenza pathogenicity is greatly strain specific and involves multiple host factors. This data demonstrates that PB1-F2 protein of influenza A virus, when expressed independently is minimally apoptotic and strongly influences the early host response in A549 cells.
机译:PB1-F2是一种多功能蛋白质,有助于甲型流感病毒的致病性。已知PB1-F2具有应变和特定于细胞的功能。在这项研究中,我们研究了A549肺上皮细胞中多种致病性流感病毒的PB1-F2蛋白的凋亡和炎症反应。 PB1-F2的过度表达导致A549细胞凋亡和炎症反应增强。比较表明,每种亚型的反应都不同。高致病性H5N1病毒的PB1-F2蛋白诱导的细胞凋亡最少,但炎症反应最大。结果表明凋亡是通过Caspase 8激活通过死亡受体配体TNFα和TRAIL介导的。在用2008西孟加拉邦H5N1病毒PB1-F2基因构建体转染的A549细胞(H5N1-WB)中,注意到细胞因子/趋化因子CXCL10,CCL5,CCL2,IFNα和IL-6的显着诱导。相反,来自2007年高致病性H5N1分离株(H5N1-M)的N1-末端截短的PB1-F2构建体没有像其他具有全长PB1-F2的H5N1-WB那样引起强烈的炎症反应,这表明N的重要性-PB1-F2的末端区域。序列分析显示,衍生自不同流感病毒的PB1-F2蛋白在多个氨基酸位置变化。二级结构预测表明,每个PB1-F2蛋白都具有独特的螺旋-环-螺旋结构。因此,我们的数据证实了PB1-F2对流感致病性的贡献很大程度上取决于菌株,并涉及多种宿主因素。该数据表明,当甲型流感病毒的PB1-F2蛋白独立表达时,其凋亡程度最低,并强烈影响A549细胞中的早期宿主反应。

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