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Furin cleavage of the SARS-CoV-2 spike is modulated by O-glycosylation.


ABSTRACT: The SARS-CoV-2 coronavirus responsible for the global pandemic contains a novel furin cleavage site in the spike protein (S) that increases viral infectivity and syncytia formation in cells. Here, we show that O-glycosylation near the furin cleavage site is mediated by members of the GALNT enzyme family, resulting in decreased furin cleavage and decreased syncytia formation. Moreover, we show that O-glycosylation is dependent on the novel proline at position 681 (P681). Mutations of P681 seen in the highly transmissible alpha and delta variants abrogate O-glycosylation, increase furin cleavage, and increase syncytia formation. Finally, we show that GALNT family members capable of glycosylating S are expressed in human respiratory cells that are targets for SARS-CoV-2 infection. Our results suggest that host O-glycosylation may influence viral infectivity/tropism by modulating furin cleavage of S and provide mechanistic insight into the role of the P681 mutations found in the highly transmissible alpha and delta variants.

SUBMITTER: Zhang L 

PROVIDER: S-EPMC8617502 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Furin cleavage of the SARS-CoV-2 spike is modulated by <i>O</i>-glycosylation.

Zhang Liping L   Mann Matthew M   Syed Zulfeqhar A ZA   Reynolds Hayley M HM   Tian E E   Samara Nadine L NL   Zeldin Darryl C DC   Tabak Lawrence A LA   Ten Hagen Kelly G KG  

Proceedings of the National Academy of Sciences of the United States of America 20211101 47


The SARS-CoV-2 coronavirus responsible for the global pandemic contains a novel furin cleavage site in the spike protein (S) that increases viral infectivity and syncytia formation in cells. Here, we show that <i>O</i>-glycosylation near the furin cleavage site is mediated by members of the GALNT enzyme family, resulting in decreased furin cleavage and decreased syncytia formation. Moreover, we show that <i>O</i>-glycosylation is dependent on the novel proline at position 681 (P681). Mutations o  ...[more]

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