The HCoV-HKU1 N-Terminal Domain Binds a Wide Range of 9- O-Acetylated Sialic Acids Presented on Different Glycan Cores

ACS Infect Dis. 2024 Nov 8;10(11):3880-3890. doi: 10.1021/acsinfecdis.4c00488. Epub 2024 Oct 12.

Abstract

Coronaviruses (CoVs) recognize a wide array of protein and glycan receptors by using the S1 subunit of the spike (S) glycoprotein. The S1 subunit contains two functional domains: the N-terminal domain (S1-NTD) and the C-terminal domain (S1-CTD). The S1-NTD of SARS-CoV-2, MERS-CoV, and HCoV-HKU1 possesses an evolutionarily conserved glycan binding cleft that facilitates weak interactions with sialic acids on cell surfaces. HCoV-HKU1 employs 9-O-acetylated α2-8-linked disialylated structures for initial binding, followed by TMPRSS2 receptor binding and virus-cell fusion. Here, we demonstrate that the HCoV-HKU1 NTD has a broader receptor binding repertoire than previously recognized. We presented HCoV-HKU1 NTD Fc chimeras on a nanoparticle system to mimic the densely decorated surface of HCoV-HKU1. These proteins were expressed by HEK293S GnTI- cells, generating species carrying Man-5 structures, often observed near the receptor binding site of CoVs. This multivalent presentation of high mannose-containing NTD proteins revealed a much broader receptor binding profile compared to that of its fully glycosylated counterpart. Using glycan microarrays, we observed that 9-O-acetylated α2-3-linked sialylated LacNAc structures are also bound, comparable to OC43 NTD, suggesting an evolutionarily conserved glycan-binding modality. Further characterization of receptor specificity indicated promiscuous binding toward 9-O-acetylated sialoglycans, independent of the glycan core (glycolipids, N- or O-glycans). We demonstrate that HCoV-HKU1 may employ additional sialoglycan receptors to trigger conformational changes in the spike glycoprotein to expose the S1-CTD for proteinaceous receptor binding.

Keywords: HCoV-HKU1; coronavirus; glycans; ligand; multivalency; receptor binding; sialic acid.

MeSH terms

  • Coronavirus / chemistry
  • Coronavirus / metabolism
  • HEK293 Cells
  • Humans
  • Polysaccharides* / chemistry
  • Polysaccharides* / metabolism
  • Protein Binding
  • Protein Domains
  • Receptors, Virus / chemistry
  • Receptors, Virus / metabolism
  • Sialic Acids* / chemistry
  • Sialic Acids* / metabolism
  • Spike Glycoprotein, Coronavirus* / chemistry
  • Spike Glycoprotein, Coronavirus* / genetics
  • Spike Glycoprotein, Coronavirus* / metabolism

Substances

  • Polysaccharides
  • Spike Glycoprotein, Coronavirus
  • Sialic Acids
  • Receptors, Virus