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Updated: Sep 20, 2026

Highly Sensitive Assay for Measurement of Arenavirus-cell Attachment
Published on: March 2, 2016
Structure-function analysis of reovirus binding to junctional adhesion molecule 1. Implications for the mechanism of
J Craig Forrest1, Jacquelyn A Campbell, Pierre Schelling
1Department of Microbiology and Immunology, and Elizabeth B. Lamb Center for Pediatric Research, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.
Abstract:
Mammalian reoviruses are nonenveloped viruses with a long, filamentous attachment protein that dictates disease phenotypes following infection of newborn mice and is a structural homologue of the adenovirus attachment protein. Reoviruses use junctional adhesion molecule 1 (JAM1) as a serotype-independent cellular receptor. JAM1 is a broadly expressed immunoglobulin superfamily protein that forms stable homodimers and regulates tight-junction permeability and lymphocyte trafficking. We employed a series of structure-guided binding and infection experiments to define residues in human JAM1 (hJAM1) important for reovirus-receptor interactions and to gain insight into mechanisms of reovirus attachment. Binding and infection experiments using chimeric and domain deletion mutant receptor molecules indicate that the amino-terminal D1 domain of hJAM1 is required for reovirus attachment, infection, and replication. Reovirus binding to hJAM1 occurs more rapidly than homotypic hJAM1 association and is competed by excess hJAM1 in vitro and on cells. Cross-linking hJAM1 diminishes the capacity of reovirus to bind hJAM1 in vitro and on cells and negates the competitive effects of soluble hJAM1 on reovirus attachment. Finally, mutagenesis studies demonstrate that residues intimately associated with the hJAM1 dimer interface are critical for reovirus interactions with hJAM1. These results suggest that reovirus attachment disrupts hJAM1 dimers and highlight similarities between the attachment strategies of reovirus and adenovirus.
Insights
Mammalian reoviruses bind to junctional adhesion molecule 1 (JAM1) by disrupting its dimers. Specific residues at the JAM1 dimer interface are critical for reovirus attachment and infection.
Area of Science:
- Virology
- Structural Biology
- Immunology
Background:
- Mammalian reoviruses are nonenveloped viruses with filamentous attachment proteins.
- Reoviruses utilize junctional adhesion molecule 1 (JAM1) as a cellular receptor, which is crucial for regulating cell junctions and immune cell movement.
Purpose of the Study:
- To define critical residues in human JAM1 (hJAM1) for reovirus-receptor interactions.
- To elucidate the mechanism of reovirus attachment to JAM1.
Main Methods:
- Structure-guided binding and infection experiments.
- Utilized chimeric and domain deletion mutant hJAM1 molecules.
- Performed mutagenesis studies targeting the hJAM1 dimer interface.
Main Results:
- The amino-terminal D1 domain of hJAM1 is essential for reovirus attachment, infection, and replication.
- Reovirus binding to hJAM1 is faster than JAM1 homodimerization and can be outcompeted by soluble hJAM1.
- Disrupting JAM1 dimers reduces reovirus binding and negates competition by soluble JAM1.
- Mutagenesis revealed that residues at the hJAM1 dimer interface are critical for reovirus interaction.
Conclusions:
- Reovirus attachment to hJAM1 involves the disruption of JAM1 dimers.
- The findings suggest conserved attachment strategies between reoviruses and adenoviruses.
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