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Multi-Organ Lesions in Suckling Mice Infected with SARS-Associated Mammalian Reovirus Linked with Apoptosis Induced by Viral Proteins μ1 and σ1

机译:感染SARS的哺乳动物呼肠孤病毒感染的乳鼠中的多器官损伤与病毒蛋白μ1和σ1诱导的细胞凋亡相关。

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摘要

We reported the isolation and characterization of a novel mammalian reassortant reovirus BYD1 that may have played an accomplice role with SARS-coronavirus during the 2003 SARS pandemic. The pathogenic mechanism of this novel reovirus is unknown. Reovirus pathogenicity has been associated with virus-induced apoptosis in cultured cells and in vivo. The reovirus outer capsid protein μ1 is recognized as the primary determinant of reovirus-induced apoptosis. Here, we investigated the apoptosis induced by BYD1, its outer capsid protein μ1, and its cell-attachment protein σ1 to understand the pathogenesis of BYD1. We also investigated BYD1 caused systemic complications in suckling mice. Under electron microscopy, BYD1-infected cells showed characteristics typical of apoptosis. Notably, ectopically expressed μ1 and σ1 induced similar pathological apoptosis, independent of BYD1 infection, in host cells in which they were expressed, which suggests that μ1 and σ1 are both apoptotic virulence factors. Consistent with previous reports of reovirus pathogenicity, suckling mice intracranially inoculated with BYD1 developed central nerve damage, myocarditis, and pneumonia. Collectively, our data suggest that BYD1 μ1- and σ1-induced apoptosis is involved in the multi-organ lesions in a suckling mouse BYD1 infection model.
机译:我们报道了在2003年SARS大流行期间可能与SARS冠状病毒起同谋作用的新型哺乳动物重配呼肠孤病毒BYD1的分离和鉴定。这种新型呼肠孤病毒的致病机制尚不清楚。呼肠孤病毒的致病性与病毒诱导的培养细胞和体内细胞凋亡有关。呼肠孤病毒外衣壳蛋白μ1被认为是呼肠孤病毒诱导的细胞凋亡的主要决定因素。在这里,我们研究了BYD1,其外衣壳蛋白μ1和其细胞附着蛋白σ1诱导的凋亡,以了解BYD1的发病机理。我们还调查了BYD1引起的乳鼠系统性并发症。在电子显微镜下,被BYD1感染的细胞表现出典型的凋亡特征。值得注意的是,异位表达的μ1和σ1在表达它们的宿主细胞中诱导相似的病理凋亡,独立于BYD1感染,这表明μ1和σ1均为凋亡毒力因子。与呼肠孤病毒致病性的先前报道一致,颅内接种BYD1的乳鼠出现中枢神经损伤,心肌炎和肺炎。总体而言,我们的数据表明BYD1μ1和σ1诱导的凋亡参与了乳鼠BYD1感染模型中的多器官损伤。

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