Walls Alexandra C, Tortorici M Alejandra, Bosch Berend-Jan, Frenz Brandon, Rottier Peter J M, DiMaio Frank, Rey Félix A, Veesler David
Department of Biochemistry, University of Washington, Seattle, Washington 98195, USA.
Institut Pasteur, Unité de Virologie Structurale, Paris, France.
Nature. 2016 Mar 3;531(7592):114-117. doi: 10.1038/nature16988. Epub 2016 Feb 8.
The tremendous pandemic potential of coronaviruses was demonstrated twice in the past few decades by two global outbreaks of deadly pneumonia. Entry of coronaviruses into cells is mediated by the transmembrane spike glycoprotein S, which forms a trimer carrying receptor-binding and membrane fusion functions. S also contains the principal antigenic determinants and is the target of neutralizing antibodies. Here we present the structure of a mouse coronavirus S trimer ectodomain determined at 4.0 Å resolution by single particle cryo-electron microscopy. It reveals the metastable pre-fusion architecture of S and highlights key interactions stabilizing it. The structure shares a common core with paramyxovirus F proteins, implicating mechanistic similarities and an evolutionary connection between these viral fusion proteins. The accessibility of the highly conserved fusion peptide at the periphery of the trimer indicates potential vaccinology strategies to elicit broadly neutralizing antibodies against coronaviruses. Finally, comparison with crystal structures of human coronavirus S domains allows rationalization of the molecular basis for species specificity based on the use of spatially contiguous but distinct domains.
在过去几十年中,冠状病毒两次引发全球致命肺炎大流行,充分显示出其巨大的疫情潜力。冠状病毒进入细胞是由跨膜刺突糖蛋白S介导的,S形成三聚体,兼具受体结合和膜融合功能。S还包含主要抗原决定簇,是中和抗体的作用靶点。在此,我们展示了通过单颗粒冷冻电子显微镜以4.0埃分辨率测定的小鼠冠状病毒S三聚体外结构域的结构。它揭示了S的亚稳态预融合结构,并突出了稳定该结构的关键相互作用。该结构与副粘病毒F蛋白具有共同的核心,这暗示了这些病毒融合蛋白在机制上的相似性和进化联系。三聚体周边高度保守的融合肽易于接近,这表明了可能的疫苗学策略,以引发针对冠状病毒的广泛中和抗体。最后,与人类冠状病毒S结构域的晶体结构进行比较,有助于基于使用空间相邻但不同的结构域来阐明物种特异性的分子基础。