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Updated: May 17, 2026

Engineering Antiviral Agents via Surface Plasmon Resonance
Published on: June 14, 2022
Enterovirus 71 uses cell surface heparan sulfate glycosaminoglycan as an attachment receptor
Chee Wah Tan1, Chit Laa Poh, I-Ching Sam
1Department of Medical Microbiology, University Malaya, Kuala Lumpur, Malaysia.
Insights
Enterovirus 71 (EV-71) uses heparan sulfate as a crucial attachment receptor for infection. This finding explains EV-71
Area of Science:
- Virology
- Cell Biology
- Glycobiology
Background:
- Enterovirus 71 (EV-71) causes hand, foot, and mouth disease, with potential for severe neurological complications.
- Existing identified EV-71 receptors do not fully explain infection pathways, suggesting undiscovered receptors.
- EV-71's broad tissue tropism hints at reliance on widely expressed cellular components like heparan sulfate.
Purpose of the Study:
- To investigate the role of heparan sulfate as a potential attachment receptor for Enterovirus 71 (EV-71).
Main Methods:
- Assessed EV-71 infection inhibition using heparin, dextran sulfate, and suramin.
- Evaluated the impact of neutralizing cell surface charge and blocking heparan sulfate.
- Studied EV-71 infection following interference with heparan sulfate biosynthesis and enzymatic removal.
- Analyzed EV-71 attachment to cell lines with varying glycosaminoglycan expression and direct binding to heparin.
Main Results:
- Heparin, dextran sulfate, and suramin significantly inhibited EV-71 infection across multiple strains.
- Blocking or removing cell surface heparan sulfate, or interfering with its biosynthesis, reduced EV-71 infection.
- EV-71 demonstrated significantly lower attachment to cells deficient in glycosaminoglycans and direct binding to heparin.
Conclusions:
- Heparan sulfate acts as a critical initial attachment receptor for Enterovirus 71 (EV-71) infection.
- This finding provides new insights into EV-71 pathogenesis and potential therapeutic targets.
Abstract:
Enterovirus 71 (EV-71) infections are usually associated with mild hand, foot, and mouth disease in young children but have been reported to cause severe neurological complications with high mortality rates. To date, four EV-71 receptors have been identified, but inhibition of these receptors by antagonists did not completely abolish EV-71 infection, implying that there is an as yet undiscovered receptor(s). Since EV-71 has a wide range of tissue tropisms, we hypothesize that EV-71 infections may be facilitated by using receptors that are widely expressed in all cell types, such as heparan sulfate. In this study, heparin, polysulfated dextran sulfate, and suramin were found to significantly prevent EV-71 infection. Heparin inhibited infection by all the EV-71 strains tested, including those with a single-passage history. Neutralization of the cell surface anionic charge by polycationic poly-d-lysine and blockage of heparan sulfate by an anti-heparan sulfate peptide also inhibited EV-71 infection. Interference with heparan sulfate biosynthesis either by sodium chlorate treatment or through transient knockdown of N-deacetylase/N-sulfotransferase-1 and exostosin-1 expression reduced EV-71 infection in RD cells. Enzymatic removal of cell surface heparan sulfate by heparinase I/II/III inhibited EV-71 infection. Furthermore, the level of EV-71 attachment to CHO cell lines that are variably deficient in cell surface glycosaminoglycans was significantly lower than that to wild-type CHO cells. Direct binding of EV-71 particles to heparin-Sepharose columns under physiological salt conditions was demonstrated. We conclude that EV-71 infection requires initial binding to heparan sulfate as an attachment receptor.
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