首页> 美国卫生研究院文献>Journal of Virology >Reverse Genetic Generation of Recombinant Zaire Ebola Viruses Containing Disrupted IRF-3 Inhibitory Domains Results in Attenuated Virus Growth In Vitro and Higher Levels of IRF-3 Activation without Inhibiting Viral Transcription or Replication
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Reverse Genetic Generation of Recombinant Zaire Ebola Viruses Containing Disrupted IRF-3 Inhibitory Domains Results in Attenuated Virus Growth In Vitro and Higher Levels of IRF-3 Activation without Inhibiting Viral Transcription or Replication

机译:包含中断的IRF-3抑制域的重组扎伊尔埃博拉病毒的反向遗传产生导致病毒的体外减毒生长和更高水平的IRF-3激活而没有抑制病毒的转录或复制。

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摘要

The VP35 protein of Zaire Ebola virus is an essential component of the viral RNA polymerase complex and also functions to antagonize the cellular type I interferon (IFN) response by blocking activation of the transcription factor IRF-3. We previously mapped the IRF-3 inhibitory domain within the C terminus of VP35. In the present study, we show that mutations that disrupt the IRF-3 inhibitory function of VP35 do not disrupt viral transcription/replication, suggesting that the two functions of VP35 are separable. Second, using reverse genetics, we successfully recovered recombinant Ebola viruses containing mutations within the IRF-3 inhibitory domain. Importantly, we show that the recombinant viruses were attenuated for growth in cell culture and that they activated IRF-3 and IRF-3-inducible gene expression at levels higher than that for Ebola virus containing wild-type VP35. In the context of Ebola virus pathogenesis, VP35 may function to limit early IFN-β production and other antiviral signals generated from cells at the primary site of infection, thereby slowing down the host's ability to curb virus replication and induce adaptive immunity.
机译:扎伊尔埃博拉病毒的VP35蛋白是病毒RNA聚合酶复合物的重要组成部分,还具有通过阻断转录因子IRF-3的激活来拮抗I型干扰素(IFN)反应的功能。我们先前在VP35的C端内绘制了IRF-3抑制域。在本研究中,我们表明破坏VP35的IRF-3抑制功能的突变不会破坏病毒的转录/复制,这表明VP35的两个功能是可分离的。其次,使用反向遗传学,我们成功地回收了包含IRF-3抑制域内突变的重组埃博拉病毒。重要的是,我们显示重组病毒在细胞培养中的生长被减毒,并且它们激活IRF-3和IRF-3诱导型基因的表达水平高于包含野生型VP35的埃博拉病毒的表达水平。在埃博拉病毒发病机理的背景下,VP35可能起着限制早期IFN-β产生以及从感染主要部位细胞产生的其他抗病毒信号的作用,从而减慢了宿主遏制病毒复制和诱导适应性免疫的能力。

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