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Heparan sulfate promotes ACE2 super-cluster assembly to enhance SARS-CoV-2-associated syncytium formation

Authors :
Qi Zhang
Wei-Chun Tang
Eduardo Stancanelli
Eunkyung Jung
Zulfeqhar Syed
Vijayakanth Pagadala
Layla Saidi
Catherine Z. Chen
Peng Gao
Miao Xu
Ivan Pavlinov
Bing Li
Wenwei Huang
Liqiang Chen
Jian Liu
Hang Xie
Wei Zheng
Yihong Ye
Publication Year :
2023
Publisher :
Research Square Platform LLC, 2023.

Abstract

The mechanism of syncytium formation, caused by spike-induced cell-cell fusion in severe COVID-19, is largely unclear. Here we combine chemical genetics with 4D confocal imaging to establish the cell surface heparan sulfate (HS) as a critical host factor exploited by SARS-CoV-2 to enhance spike’s fusogenic activity. HS binds spike to facilitate ACE2 clustering, generating synapse-like cell-cell contacts to promote fusion pore formation. ACE2 clustering, and thus, syncytium formation is significantly mitigated by chemical or genetic elimination of cell surface HS, while in a cell-free system consisting of purified HS, spike, and lipid-anchored ACE2, HS directly induces ACE2 clustering. Importantly, the interaction of HS with spike allosterically enables a conserved ACE2 linker in receptor clustering, which concentrates spike at the fusion site to overcome fusion-associated activity loss. This fusion-boosting mechanism can be effectively targeted by an investigational HS-binding drug, which reduces syncytium formation in vitro and viral infection in mice.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........640e73372d4ff0b1480b87c79fe95d43
Full Text :
https://doi.org/10.21203/rs.3.rs-2693563/v1