Publication | Open Access
Binding of the SARS-CoV-2 Spike Protein to Glycans
38
Citations
57
References
2020
Year
Unknown Venue
GlycoproteomicsVirus StructureCell-surface GlycansMolecular VirologyNatural SciencesGlycobiologyViral PathogenesisMolecular BiologyVirologyImmunologySars-cov-2 Spike ProteinHeparan SulfateHs BindingViral Structural ProteinMedicineCell BiologyCovid-19Glycosylation
Abstract The pandemic of SARS-CoV-2 has caused a high number of deaths in the world. To combat it, it is necessary to develop a better understanding of how the virus infects host cells. Infection normally starts with the attachment of the virus to cell-surface glycans like heparan sulfate (HS) and sialic acid-containing oligosaccharides. In this study, we examined and compared the binding of the subunits and spike (S) proteins of SARS-CoV-2 and SARS-CoV, MERS-CoV to these glycans. Our results revealed that the S proteins and subunits can bind to HS in a sulfation-dependent manner, the length of HS is not a critical factor for the binding, and no binding with sialic acid residues was detected. Overall, this work suggests that HS binding may be a general mechanism for the attachment of these coronaviruses to host cells, and supports the potential importance of HS in infection and in the development of antiviral agents against these viruses.
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