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The Avian Coronavirus Infectious Bronchitis Virus Undergoes Direct Low-pH-Dependent Fusion Activation during Entry into Host Cells

机译:禽冠状病毒感染性支气管炎病毒进入宿主细胞过程中直接低pH依赖性融合激活。

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摘要

Coronaviruses are the causative agents of respiratory disease in humans and animals, including severe acute respiratory syndrome. Fusion of coronaviruses is generally thought to occur at neutral pH, although there is also evidence for a role of acidic endosomes during entry of a variety of coronaviruses. Therefore, the molecular basis of coronavirus fusion during entry into host cells remains incompletely defined. Here, we examined coronavirus-cell fusion and entry employing the avian coronavirus infectious bronchitis virus (IBV). Virus entry into cells was inhibited by acidotropic bases and by other inhibitors of pH-dependent endocytosis. We carried out fluorescence-dequenching fusion assays of R18-labeled virions and show that for IBV, coronavirus-cell fusion occurs in a low-pH-dependent manner, with a half-maximal rate of fusion occurring at pH 5.5. Fusion was reduced, but still occurred, at lower temperatures (20°C). We observed no effect of inhibitors of endosomal proteases on the fusion event. These data are the first direct measure of virus-cell fusion for any coronavirus and demonstrate that the coronavirus IBV employs a direct, low-pH-dependent virus-cell fusion activation reaction. We further show that IBV was not inactivated, and fusion was unaffected, by prior exposure to pH 5.0 buffer. Virions also showed evidence of reversible conformational changes in their surface proteins, indicating that aspects of the fusion reaction may be reversible in nature.
机译:冠状病毒是人类和动物呼吸系统疾病的病原,包括严重的急性呼吸系统综合症。尽管也有证据表明酸性内体在各种冠状病毒进入过程中起着作用,但通常认为冠状病毒的融合发生在中性pH下。因此,进入宿主细胞过程中冠状病毒融合的分子基础仍然不完整。在这里,我们检查了冠状病毒细胞融合和进入采用禽冠状病毒感染性支气管炎病毒(IBV)。嗜酸碱和pH依赖性内吞作用的其他抑制剂抑制病毒进入细胞。我们对R18标记的病毒粒子进行了荧光定型融合测定,结果表明,对于IBV,冠状病毒-细胞融合以低pH依赖性方式发生,在pH 5.5时出现最大融合速率的一半。在较低温度(20°C)下融合减少,但仍然发生。我们没有观察到内体蛋白酶抑制剂对融合事件的影响。这些数据是对任何冠状病毒进行病毒-细胞融合的第一个直接量度,并证明冠状病毒IBV采用直接的,低pH依赖性的病毒-细胞融合激活反应。我们进一步表明,事先暴露于pH 5.0缓冲液不会使IBV灭活,融合也不会受到影响。病毒粒子还显示出其表面蛋白可逆构象变化的证据,表明融合反应的某些方面在本质上可能是可逆的。

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