Structural basis for human coronavirus attachment to sialic acid receptors

Publication date

2019-06

Authors

Alejandra Tortorici, M
Walls, Alexandra C
Lang, YifeiISNI 0000000492902596
Wang, Chunyan
Li, ZeshiISNI 0000000492906570
Koerhuis, Danielle
Boons, Geert-JanORCID 0000-0003-3111-5954ISNI 0000000120249047
Bosch, Berend-JanISNI 0000000387346575
Rey, Félix A
de Groot, R.J.ISNI 0000000397145355

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Abstract

Coronaviruses cause respiratory tract infections in humans and outbreaks of deadly pneumonia worldwide. Infections are initiated by the transmembrane spike (S) glycoprotein, which binds to host receptors and fuses the viral and cellular membranes. To understand the molecular basis of coronavirus attachment to oligosaccharide receptors, we determined cryo-EM structures of coronavirus OC43 S glycoprotein trimer in isolation and in complex with a 9-O-acetylated sialic acid. We show that the ligand binds with fast kinetics to a surface-exposed groove and that interactions at the identified site are essential for S-mediated viral entry into host cells, but free monosaccharide does not trigger fusogenic conformational changes. The receptor-interacting site is conserved in all coronavirus S glycoproteins that engage 9-O-acetyl-sialogycans, with an architecture similar to those of the ligand-binding pockets of coronavirus hemagglutinin esterases and influenza virus C/D hemagglutinin-esterase fusion glycoproteins. Our results demonstrate these viruses evolved similar strategies to engage sialoglycans at the surface of target cells.

Keywords

Coronacrisis-Taverne

Citation

Alejandra Tortorici, M, Walls, A C, Lang, Y, Wang, C, Li, Z, Koerhuis, D, Boons, G-J, Bosch, B-J, Rey, F A, de Groot, R J & Veesler, D 2019, 'Structural basis for human coronavirus attachment to sialic acid receptors', Nature Structural and Molecular Biology, vol. 26, no. 6, pp. 481-489. https://doi.org/10.1038/s41594-019-0233-y