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首页> 外文期刊>Cellular microbiology >Phosphatidylinositol-3-kinase (PI3K) is activated by influenza virus vRNA via the pathogen pattern receptor Rig-I to promote efficient type I interferon production
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Phosphatidylinositol-3-kinase (PI3K) is activated by influenza virus vRNA via the pathogen pattern receptor Rig-I to promote efficient type I interferon production

机译:流感病毒vRNA通过病原体模式受体Rig-1激活磷脂酰肌醇3-激酶(PI3K),以促进有效的I型干扰素产生

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摘要

The phosphatidylinositol-3-kinase (PI3K) was identified to be activated upon influenza A virus (IAV) infection. An early and transient induction of PI3K signalling is caused by viral attachment to cells and promotes virus entry. In later phases of infection the kinase is activated by the viral NS1 protein to prevent premature apoptosis. Besides these virus supporting functions, it was suggested that PI3K signalling is involved in dsRNA and IAV induced antiviral responses by enhancing the activity of interferon regulatory factor-3 (IRF-3). However, molecular mechanisms of activation remained obscure. Here we show that accumulation of vRNA in cells infected with influenza A or B viruses results in PI3K activation. Furthermore, expression of the RNA receptors Rig-I and MDA5 was increased upon stimulation with virion extracted vRNA or IAV infection. Using siRNA approaches, Rig-I was identified as pathogen receptor necessary for influenza virus vRNA sensing and subsequent PI3K activation in a TRIM25 and MAVS signalling dependent manner. Rig-I induced PI3K signalling was further shown to be essential for complete IRF-3 activation and consequently induction of the type I interferon response. These data identify PI3K as factor that is activated as part of the Rig-I mediated antipathogen response to enhance expression of type I interferons.
机译:磷脂酰肌醇-3-激酶(PI3K)被确定在甲型流感病毒(IAV)感染后被激活。 PI3K信号的早期和短暂诱导是由病毒附着在细胞上引起的,并促进病毒进入。在感染的后期阶段,激酶被病毒NS1蛋白激活,以防止过早凋亡。除了这些病毒支持功能外,有人还认为PI3K信号传导可通过增强干扰素调节因子3(IRF-3)的活性而参与dsRNA和IAV诱导的抗病毒反应。但是,激活的分子机制仍然不清楚。在这里,我们显示了感染了甲型或乙型流感病毒的细胞中vRNA的积累会导致PI3K激活。此外,在用病毒体提取的vRNA或IAV感染刺激后,RNA受体Rig-1和MDA5的表达增加。使用siRNA方法,Rig-1被确定为流感病毒vRNA感应以及随后以TRIM25和MAVS信号传导依赖性方式激活PI3K所必需的病原体受体。进一步显示,Rig-1诱导的PI3K信号传导对于完整的IRF-3激活至关重要,因此对于I型干扰素应答的诱导也是必不可少的。这些数据将PI3K鉴定为因子,该因子作为Rig-1介导的抗病原体应答的一部分而被激活,以增强I型干扰素的表达。

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