Identification of sialic acid-binding function for the Middle East respiratory syndrome coronavirus spike glycoprotein.

Wentao Li1 Ruben J G Hulswit1 Ivy Widjaja1 V Stalin Raj2 Ryan McBride3,4,5 Wenjie Peng3,4,5 W Widagdo2 M Alejandra Tortorici6,7 Brenda van Dieren1 Yifei Lang1 Jan W M van Lent8 James C Paulson3 Cornelis A M de Haan1 Raoul J de Groot1 Frank J M van Kuppeveld1 Bart L Haagmans9,10 Berend-Jan Bosch11,10
Affiliations 11 institutions
  1. Virology Division, Department of Infectious Diseases & Immunology, Faculty of Veterinary Medicine, Utrecht University, 3584 CL Utrecht, The Netherlands.
  2. Department of Viroscience, Erasmus Medical Center, 3015 CN Rotterdam, The Netherlands.
  3. Department of Cell and Molecular Biology, The Scripps Research Institute, La Jolla, CA 92037.
  4. Department of Chemical Physiology, The Scripps Research Institute, La Jolla, CA 92037.
  5. Department of Immunology and Microbial Science, The Scripps Research Institute, La Jolla, CA 92037.
  6. Institut Pasteur, Unité de Virologie Structurale, 75015 Paris, France.
  7. CNRS UMR 3569 Virologie, 75015 Paris, France.
  8. Laboratory of Virology, Department of Plant Sciences, Wageningen University, 6708 PB Wageningen, The Netherlands.
  9. Department of Viroscience, Erasmus Medical Center, 3015 CN Rotterdam, The Netherlands
  10. [email protected] [email protected].
  11. Virology Division, Department of Infectious Diseases & Immunology, Faculty of Veterinary Medicine, Utrecht University, 3584 CL Utrecht, The Netherlands

Abstract

Middle East respiratory syndrome coronavirus (MERS-CoV) targets the epithelial cells of the respiratory tract both in humans and in its natural host, the dromedary camel. Virion attachment to host cells is mediated by 20-nm-long homotrimers of spike envelope protein S. The N-terminal subunit of each S protomer, called S1, folds into four distinct domains designated S1A through S1D Binding of MERS-CoV to the cell surface entry receptor dipeptidyl peptidase 4 (DPP4) occurs via S1B We now demonstrate that in addition to DPP4, MERS-CoV binds to sialic acid (Sia). Initially demonstrated by hemagglutination assay with human erythrocytes and intact virus, MERS-CoV Sia-binding activity was assigned to S subdomain S1A When multivalently displayed on nanoparticles, S1 or S1A bound to human erythrocytes and to human mucin in a strictly Sia-dependent fashion. Glycan array analysis revealed a preference for α2,3-linked Sias over α2,6-linked Sias, which correlates with the differential distribution of α2,3-linked Sias and the predominant sites of MERS-CoV replication in the upper and lower respiratory tracts of camels and humans, respectively. Binding is hampered by Sia modifications such as 5-N-glycolylation and (7,)9-O-acetylation. Depletion of cell surface Sia by neuraminidase treatment inhibited MERS-CoV entry of Calu-3 human airway cells, thus providing direct evidence that virus-Sia interactions may aid in virion attachment. The combined observations lead us to propose that high-specificity, low-affinity attachment of MERS-CoV to sialoglycans during the preattachment or early attachment phase may form another determinant governing the host range and tissue tropism of this zoonotic pathogen.

Supporting text Virus Host Location
attachment 2 MERS-CoV 24 receptor 19 sialic acid 12 spike 25 Animals 1949 Camelus 39 Coronavirus Infections 171 Dipeptidyl Peptidase 4 32 Humans 1441 Middle East Respiratory Syndrome Coronavirus 68 Mucins 2 Polysaccharides 31 Receptors, Virus 205 Sialic Acids 29 Spike Glycoprotein, Coronavirus 274 Virus Attachment 55

Evidence records

2 total
Functional Mechanism
2 records · 1 evidence types
Evidence type
2 records
OVE2720
Key finding

MERS-CoV spike glycoprotein binds to sialic acid via the S1A subdomain in addition to its known DPP4 receptor.

Virus
Host
Location
Not specified
Supporting text

We now demonstrate that in addition to DPP4, MERS-CoV binds to sialic acid (Sia). Initially demonstrated by hemagglutination assay with human erythrocytes and intact virus, MERS-CoV Sia-binding activity was assigned to S subdomain S1A.

Method
hemagglutination assay | intact virus binding assay
Receptors
sialic acid | DPP4
OVE2722
Key finding

Neuraminidase-mediated depletion of cell surface sialic acid inhibited MERS-CoV entry into Calu-3 human airway cells, confirming sialic acid involvement in viral attachment and entry.

Virus
Host
Location
Not specified
Supporting text

Depletion of cell surface Sia by neuraminidase treatment inhibited MERS-CoV entry of Calu-3 human airway cells, thus providing direct evidence that virus–Sia interactions may aid in virion attachment.

Method
neuraminidase treatment | virus entry assay
Receptors
sialic acid