Structure, receptor recognition, and antigenicity of the human coronavirus CCoV-HuPn-2018 spike glycoprotein

人类冠状病毒CCoV-HuPn-2018刺突糖蛋白的结构、受体识别和抗原性

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作者:M Alejandra Tortorici ,Alexandra C Walls ,Anshu Joshi ,Young-Jun Park ,Rachel T Eguia ,Marcos C Miranda ,Elizabeth Kepl ,Annie Dosey ,Terry Stevens-Ayers ,Michael J Boeckh ,Amalio Telenti ,Antonio Lanzavecchia ,Neil P King ,Davide Corti ,Jesse D Bloom ,David Veesler

Abstract

The isolation of CCoV-HuPn-2018 from a child respiratory swab indicates that more coronaviruses are spilling over to humans than previously appreciated. We determined the structures of the CCoV-HuPn-2018 spike glycoprotein trimer in two distinct conformational states and showed that its domain 0 recognizes sialosides. We identified that the CCoV-HuPn-2018 spike binds canine, feline, and porcine aminopeptidase N (APN) orthologs, which serve as entry receptors, and determined the structure of the receptor-binding B domain in complex with canine APN. The introduction of an oligosaccharide at position N739 of human APN renders cells susceptible to CCoV-HuPn-2018 spike-mediated entry, suggesting that single-nucleotide polymorphisms might account for viral detection in some individuals. Human polyclonal plasma antibodies elicited by HCoV-229E infection and a porcine coronavirus monoclonal antibody inhibit CCoV-HuPn-2018 spike-mediated entry, underscoring the cross-neutralizing activity among ɑ-coronaviruses. These data pave the way for vaccine and therapeutic development targeting this zoonotic pathogen representing the eighth human-infecting coronavirus. Keywords: CCoV-HuPn-2018; HCoV-229E; aminopeptidase; cryo-EM; sialosides; zoonotic viruses; ɑ-coronaviruses.

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