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The Anti-interferon Activity of Conserved Viral dUTPase ORF54 is Essential for an Effective MHV-68 Infection

机译:保守的病毒dUTPase ORF54的抗干扰素活性对于有效的MHV-68感染至关重要

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摘要

Gammaherpesviruses such as KSHV and EBV establish lifelong persistent infections through latency in lymphocytes. These viruses have evolved several strategies to counteract the various components of the innate and adaptive immune systems. We conducted an unbiased screen using the genetically and biologically related virus, MHV-68, to find viral ORFs involved in the inhibition of type I interferon signaling and identified a conserved viral dUTPase, ORF54. Here we define the contribution of ORF54 in type I interferon inhibition by ectopic expression and through the use of genetically modified MHV-68. ORF54 and an ORF54 lacking dUTPase enzymatic activity efficiently inhibit type I interferon signaling by inducing the degradation of the type I interferon receptor protein IFNAR1. Subsequently, we show in vitro that the lack of ORF54 causes a reduction in lytic replication in the presence of type I interferon signaling. Investigation of the physiological consequence of IFNAR1 degradation and importance of ORF54 during MHV-68 in vivo infection demonstrates that ORF54 has an even greater impact on persistent infection than on lytic replication. MHV-68 lacking ORF54 expression is unable to efficiently establish latent infection in lymphocytes, although it replicates relatively normally in lung tissues. However, infection of IFNAR−/− mice alleviates this phenotype, emphasizing the specific role of ORF54 in type I interferon inhibition. Infection of mice and cells by a recombinant MHV-68 virus harboring a site specific mutation in ORF54 rendering the dUTPase inactive demonstrates that dUTPase enzymatic activity is not required for anti-interferon function of ORF54. Moreover, we find that dUTPase activity is dispensable at all stages of MHV-68 infection analyzed. Overall, our data suggest that ORF54 has evolved anti-interferon activity in addition to its dUTPase enzymatic activity, and that it is actually the anti-interferon role that renders ORF54 critical for establishing an effective persistent infection of MHV-68.
机译:伽玛疱疹病毒(例如KSHV和EBV)通过淋巴细胞潜伏期建立终身持续感染。这些病毒已经进化出多种策略来抵抗先天性和适应性免疫系统的各个组成部分。我们使用遗传和生物学相关病毒MHV-68进行了公正的筛选,以发现参与抑制I型干扰素信号传导的病毒ORF,并确定了保守的病毒dUTPase ORF54。在这里,我们通过异位表达并通过使用基因修饰的MHV-68来定义ORF54在I型干扰素抑制中的作用。 ORF54和缺乏dUTPase酶促活性的ORF54通过诱导I型干扰素受体蛋白IFNAR1降解,有效抑制I型干扰素信号传导。随后,我们在体外显示,在存在I型干扰素信号传导的情况下,ORF54的缺乏会导致裂解复制的减少。对IFNAR1降解的生理结果和MHV-68体内感染期间ORF54重要性的研究表明,ORF54对持续性感染的影响甚至大于对溶菌复制的影响。缺乏ORF54表达的MHV-68虽然可以在肺组织中相对正常地复制,但却无法有效地在淋巴细胞中建立潜在感染。然而,IFNAR-/-小鼠的感染减轻了这种表型,强调了ORF54在I型干扰素抑制中的特定作用。重组MHV-68病毒在ORF54中具有位点特异性突变,致使dUTPase失活,从而感染小鼠和细胞,这表明ORTP54的抗干扰素功能不需要dUTPase酶活性。此外,我们发现在分析的MHV-68感染的所有阶段中,dUTPase活性都是可有可无的。总体而言,我们的数据表明,ORF54除具有dUTPase酶促活性外还发展了抗干扰素活性,而实际上正是抗干扰素的作用使ORF54对建立有效的持久性MHV-68感染至关重要。

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