Department of Biochemistry, University of Washington, Seattle, WA 98195.
Département de Virologie, Unité de Virologie Structurale, Institut Pasteur, Paris, France.
Proc Natl Acad Sci U S A. 2017 Oct 17;114(42):11157-11162. doi: 10.1073/pnas.1708727114. Epub 2017 Oct 3.
The tremendous pandemic potential of coronaviruses was demonstrated twice in the past few decades by two global outbreaks of deadly pneumonia. The coronavirus spike (S) glycoprotein initiates infection by promoting fusion of the viral and cellular membranes through conformational changes that remain largely uncharacterized. Here we report the cryoEM structure of a coronavirus S glycoprotein in the postfusion state, showing large-scale secondary, tertiary, and quaternary rearrangements compared with the prefusion trimer and rationalizing the free-energy landscape of this conformational machine. We also biochemically characterized the molecular events associated with refolding of the metastable prefusion S glycoprotein to the postfusion conformation using limited proteolysis, mass spectrometry, and single-particle EM. The observed similarity between postfusion coronavirus S and paramyxovirus F structures demonstrates that a conserved refolding trajectory mediates entry of these viruses and supports the evolutionary relatedness of their fusion subunits. Finally, our data provide a structural framework for understanding the mode of neutralization of antibodies targeting the fusion machinery and for engineering next-generation subunit vaccines or inhibitors against this medically important virus family.
过去几十年中,两次致命性肺炎的全球大爆发,两次证明了冠状病毒的巨大大流行潜力。冠状病毒刺突(S)糖蛋白通过构象变化促进病毒和细胞膜融合来启动感染,而这些构象变化在很大程度上仍未得到充分描述。在这里,我们报告了冠状病毒 S 糖蛋白在融合后状态的冷冻电镜结构,与融合前三聚体相比,显示出大规模的二级、三级和四级重排,并合理推断了这种构象机器的自由能景观。我们还使用有限的蛋白水解、质谱和单颗粒 EM 对与不稳定的融合前 S 糖蛋白到融合后构象的重折叠相关的分子事件进行了生化表征。观察到融合后冠状病毒 S 和副粘病毒 F 结构之间的相似性表明,保守的重折叠轨迹介导了这些病毒的进入,并支持它们融合亚基的进化相关性。最后,我们的数据为理解针对融合机制的抗体的中和模式提供了一个结构框架,并为针对这种具有重要医学意义的病毒家族的下一代亚单位疫苗或抑制剂的工程提供了支持。