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The West Nile virus assembly process evades the conserved antiviral mechanism of the interferon-induced MxA protein

机译:西尼罗河病毒的装配过程规避了干扰素诱导的MxA蛋白的保守抗病毒机制

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摘要

Flaviviruses have evolved means to evade host innate immune responses. Recent evidence suggests this is due to prevention of interferon production and signaling in flavivirus-infected cells. Here we show that the interferon-induced MxA protein can sequester the West Nile virus strain Kunjin virus (WNVkun) capsid protein in cytoplasmic tubular structures in an expression-replication system. This sequestering resulted in reduced titers of secreted WNVKun particles. We show by electron microscopy, tomography and 3D modeling that these cytoplasmic tubular structures form organized bundles. Additionally we show that recombinant ER-targeted MxA can restrict production of infectious WNVKun under conditions of virus infection. Our results indicate a co-ordinated and compartmentalized WNVKun assembly process may prevent recognition of viral components by MxA, particularly the capsid protein. This recognition can be exploited if MxA is targeted to intracellular sites of WNVKun assembly. This results in further understanding of the mechanisms of flavivirus evasion from the immune system.
机译:黄病毒已发展出逃避宿主固有免疫反应的手段。最近的证据表明,这是由于预防了黄病毒感染细胞中干扰素的产生和信号传导。在这里,我们表明干扰素诱导的MxA蛋白可以隔离表达复制系统中细胞质管状结构中的西尼罗河病毒株昆金病毒(WNVkun)衣壳蛋白。这种螯合导致分泌的WNVKun颗粒的滴度降低。我们通过电子显微镜,断层扫描和3D建模显示,这些胞质管状结构形成有组织的束。此外,我们表明,针对ER的重组MxA可以在病毒感染的条件下限制感染性WNVKun的产生。我们的结果表明,协调和分隔的WNVKun组装过程可能会阻止MxA(尤其是衣壳蛋白)识别病毒成分。如果MxA靶向WNVKun装配的胞内位点,则可以利用这种识别。这导致人们进一步了解黄病毒从免疫系统逃逸的机制。

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