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Viral targeting of the interferon-β-inducing Traf family member-associated NF-κB activator (TANK)-binding kinase-1

机译:干扰素诱导Traf家族成员相关NF-κB激活因子(TANK)结合激酶-1的病毒靶向

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摘要

Expression of the antiviral cytokines IFN-α/β is among the most potent innate defenses of higher vertebrates to virus infections, which is controlled by the inducible transcription factor IFN regulatory factor (IRF)3. Borna disease virus (BDV) establishes persistent noncytolytic infections in animals and tissue culture cells, indicating that it can circumvent this antiviral reaction by an unexplained activity. In this study, we identify the BDV P protein as microbial gene product that associates with and inhibits the principal regulatory kinase of IRF3, Traf family member-associated NF-κB activator (TANK)-binding kinase 1 (TBK-1). We demonstrate that the P protein counteracts TBK-1-dependent IFN-β expression in cells and, hence, the establishment of an antiviral state. Furthermore, our data show that the BDV P protein itself is phosphorylated by TBK-1, suggesting that P functions as a viral decoy substrate that prevents activation of cellular target proteins of TBK-1. Thus, our findings provide evidence for a previously undescribed mechanism by which a viral protein interferes with the induction of the antiviral IFN cascade.
机译:抗病毒细胞因子IFN-α/β的表达是高等脊椎动物对病毒感染的最有效的先天防御手段之一,它由诱导型转录因子IFN调节因子(IRF)3控制。博尔纳病病毒(BDV)在动物和组织培养细胞中建立了持久的非溶细胞性感染,表明它可以通过无法解释的活性来规避这种抗病毒反应。在这项研究中,我们将BDV P蛋白鉴定为微生物基因产物,该产物与IRF3的主要调节激酶(Traf家族成员相关的NF-κB激活剂(TANK)结合激酶1(TBK-1))相关联,并抑制该激酶。我们证明,P蛋白抵消了TBK-1依赖的IFN-β在细胞中的表达,并因此建立了抗病毒状态。此外,我们的数据表明BDV P蛋白本身被TBK-1磷酸化,表明P充当病毒诱饵底物,阻止TBK-1的细胞靶蛋白活化。因此,我们的发现为以前未描述的机制提供了证据,病毒蛋白通过该机制干扰抗病毒IFN级联的诱导。

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