Site-Specific Steric Control of SARS-CoV-2 Spike Glycosylation

SARS-CoV-2 刺突糖基化的位点特异性立体控制

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作者:Joel D Allen, Himanshi Chawla, Firdaus Samsudin, Lorena Zuzic, Aishwary Tukaram Shivgan, Yasunori Watanabe, Wan-Ting He, Sean Callaghan, Ge Song, Peter Yong, Philip J M Brouwer, Yutong Song, Yongfei Cai, Helen M E Duyvesteyn, Tomas Malinauskas, Joeri Kint, Paco Pino, Maria J Wurm, Martin Frank, Bing

Abstract

A central tenet in the design of vaccines is the display of native-like antigens in the elicitation of protective immunity. The abundance of N-linked glycans across the SARS-CoV-2 spike protein is a potential source of heterogeneity among the many different vaccine candidates under investigation. Here, we investigate the glycosylation of recombinant SARS-CoV-2 spike proteins from five different laboratories and compare them against S protein from infectious virus, cultured in Vero cells. We find patterns that are conserved across all samples, and this can be associated with site-specific stalling of glycan maturation that acts as a highly sensitive reporter of protein structure. Molecular dynamics simulations of a fully glycosylated spike support a model of steric restrictions that shape enzymatic processing of the glycans. These results suggest that recombinant spike-based SARS-CoV-2 immunogen glycosylation reproducibly recapitulates signatures of viral glycosylation.

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