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Updated: Jun 8, 2026

Engineering Antiviral Agents via Surface Plasmon Resonance
Published on: June 14, 2022
Shared paramyxoviral glycoprotein architecture is adapted for diverse attachment strategies
Thomas A Bowden1, Max Crispin, E Yvonne Jones
1Division of Structural Biology, Wellcome Trust Centre for Human Genetics, University of Oxford, Roosevelt Drive, Oxford OX3 7BN, UK. Tom@strubi.ok.ac.uk
Abstract:
Members within the paramyxovirus subfamily Paramyxovirinae constitute a large number of highly virulent human and animal pathogens. The glycoproteins present on these viruses are responsible for mediating host cell attachment and fusion and are key targets for the design of antiviral entry inhibitors. In the present review, we discuss recent structural studies which have led to a better understanding of the various mechanisms by which different paramyxoviruses use their attachment glycoproteins to hijack specific protein and glycan cell-surface receptors to facilitate viral entry. It is observed that the paramyxovirus attachment glycoprotein consists of a conserved overall structure which includes an N-terminal six-bladed β-propeller domain which is responsible for cell receptor binding. Crystal structures of this domain from different biomedically important paramyxoviruses, including measles, Nipah, Hendra, Newcastle disease and parainfluenza viruses, alone and in complex with their functional cell-surface receptors, demonstrate three contrasting mechanisms of receptor engagement that paramyxoviruses have evolved to confer discreet protein- and glycan-receptor specificity. This structural information highlights the adaptability of the paramyxovirus attachment glycoprotein surface and the potential for the emergence of new and potentially harmful viruses in human hosts.
Insights
Paramyxoviruses use specific attachment glycoproteins to infect cells. Structural studies reveal three distinct mechanisms for receptor binding, highlighting viral adaptability and potential for new pathogen emergence.
Area of Science:
- Virology
- Structural Biology
- Molecular Mechanisms
Background:
- Paramyxoviruses are significant human and animal pathogens.
- Viral glycoproteins mediate host cell attachment and fusion, representing targets for antiviral therapies.
Purpose of the Study:
- To review recent structural studies on paramyxovirus attachment glycoproteins.
- To elucidate mechanisms of viral entry and receptor engagement.
Main Methods:
- Analysis of crystal structures of paramyxovirus attachment glycoprotein domains.
- Examination of complexes with cell-surface receptors.
Main Results:
- Paramyxovirus attachment glycoproteins share a conserved structure with a receptor-binding β-propeller domain.
- Three distinct receptor engagement mechanisms confer protein- and glycan-receptor specificity.
- Structural data reveals adaptability of the attachment glycoprotein surface.
Conclusions:
- Structural insights enhance understanding of paramyxovirus entry mechanisms.
- Viral adaptability suggests potential for emergence of novel human pathogens.
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