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Selective Packaging in Murine Coronavirus Promotes Virulence by Limiting Type I Interferon Responses

机译:鼠冠状病毒中的选择性包装通过限制I型干扰素反应来促进毒力。

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ABSTRACT Selective packaging is a mechanism used by multiple virus families to specifically incorporate genomic RNA (gRNA) into virions and exclude other types of RNA. Lineage A betacoronaviruses incorporate a 95-bp stem-loop structure, the packaging signal (PS), into the nsp15 locus of ORF1b that is both necessary and sufficient for the packaging of RNAs. However, unlike other viral PSs, where mutations generally resulted in viral replication defects, mutation of the coronavirus (CoV) PS results in large increases in subgenomic RNA packaging with minimal effects on gRNA packaging in vitro and on viral titers. Here, we show that selective packaging is also required for viral evasion of the innate immune response and optimal pathogenicity. We engineered two distinct PS mutants in two different strains of murine hepatitis virus (MHV) that packaged increased levels of subgenomic RNAs, negative-sense genomic RNA, and even cellular RNAs. All PS mutant viruses replicated normally in vitro but caused dramatically reduced lethality and weight loss in vivo . PS mutant virus infection of bone marrow-derived macrophages resulted in increased interferon (IFN) production, indicating that the innate immune system limited the replication and/or pathogenesis of PS mutant viruses in vivo . PS mutant viruses remained attenuated in MAVS~(?/?)and Toll-like receptor 7-knockout (TLR7~(?/?)) mice, two well-known RNA sensors for CoVs, but virulence was restored in interferon alpha/beta receptor-knockout (IFNAR~(?/?)) mice or in MAVS~(?/?)mice treated with IFNAR-blocking antibodies. Together, these data indicate that coronaviruses promote virulence by utilizing selective packaging to avoid innate immune detection. IMPORTANCE Coronaviruses (CoVs) produce many types of RNA molecules during their replication cycle, including both positive- and negative-sense genomic and subgenomic RNAs. Despite this, coronaviruses selectively package only positive-sense genomic RNA into their virions. Why CoVs selectively package their genomic RNA is not clear, as disruption of the packaging signal in MHV, which leads to loss of selective packaging, does not affect genomic RNA packaging or virus replication in cultured cells. This contrasts with other viruses, where disruption of selective packaging generally leads to altered replication. Here, we demonstrate that in the absence of selective packaging, the virulence of MHV was significantly reduced. Importantly, virulence was restored in the absence of interferon signaling, indicating that selective packaging is a mechanism used by CoVs to escape innate immune detection.
机译:摘要选择性包装是多种病毒家族用来将基因组RNA(gRNA)特异地掺入病毒粒子并排除其他类型RNA的机制。谱系A冠状病毒将一个95 bp的茎环结构(即包装信号(PS))整合到ORF1b的nsp15基因座中,这对于包装RNA既必要又充分。然而,与其他病毒PS不同,后者通常会导致病毒复制缺陷,而冠状病毒(CoV)PS的突变会导致亚基因组RNA包装大量增加,而对gRNA体外包装和病毒滴度的影响却很小。在这里,我们显示选择性包装对于先天免疫反应的病毒逃避和最佳致病性也是必需的。我们在鼠肝炎病毒(MHV)的两种不同品系中设计了两个截然不同的PS突变体,它们包装了提高水平的亚基因组RNA,负义基因组RNA甚至细胞RNA。所有PS突变病毒在体外均可正常复制,但在体内致死率和体重减轻显着降低。骨髓衍生巨噬细胞的PS突变病毒感染导致干扰素(IFN)产生增加,表明先天免疫系统限制了PS突变病毒在体内的复制和/或发病机制。 PS突变病毒仍在MAVS〜(?/?)和Toll样受体7敲除(TLR7〜(?/?))小鼠中减毒,这是两个众所周知的CoV RNA传感器,但干扰素alpha / beta中的毒力得以恢复。受体敲除(IFNAR_(α/β))小鼠或用IFNAR阻断抗体治疗的MAVS_(α/β)小鼠。总之,这些数据表明冠状病毒通过利用选择性包装来避免先天免疫检测而提高了毒力。重要信息冠状病毒(CoV)在其复制周期中会产生多种类型的RNA分子,包括正义和负义基因组和亚基因组RNA。尽管如此,冠状病毒仅将正向基因组RNA选择性地包装到其病毒体中。冠状病毒为何选择性包装其基因组RNA的原因尚不清楚,因为MHV中包装信号的破坏(导致选择性包装的丧失)不会影响基因组RNA的包装或病毒在培养细胞中的复制。这与其他病毒相反,在其他病毒中,选择性包装的破坏通常会导致复制改变。在这里,我们证明了在没有选择性包装的情况下,MHV的毒力显着降低。重要的是,在没有干扰素信号传导的情况下,毒力得以恢复,这表明选择性包装是CoV用来逃避先天免疫检测的一种机制。

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