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Published on: December 8, 2023
M135R is a novel cell surface virulence factor of myxoma virus
John W Barrett1, Joanna Sypula, Fuan Wang
1Biotherapeutics Research Group, Robarts Research Institute and Department of Microbiology and Immunology, University of Western Ontario, 1400 Western Road, Room 126, London, ON N6G 2V4, Canada.
Abstract:
Myxoma virus (MV) encodes a cell surface protein (M135R) that is predicted to mimic the host alpha/beta interferon receptor (IFN-alpha/beta-R) and thus prevent IFN-alpha/beta from triggering a host antiviral response. This prediction is based on sequence similarity to B18R, the viral IFN-alpha/beta-R from vaccinia virus (VV), which has been demonstrated to bind and inhibit type I interferons. However, M135R is only half the size of VV B18R. All other poxvirus-encoded IFN-alpha/beta-R homologs align only to the amino-terminal half of M135R. Peptide antibodies raised against M135R were used for immunoblotting and immunofluorescence and indicate that M135R is expressed as an early gene and that the product is a cell surface N-linked glycoprotein that is not secreted. In contrast to the predicted properties of M135R as an inhibitor of type I interferon, all binding and inhibition assays designed to demonstrate whether M135R can interact with IFN-alpha/beta have been negative. However, pathogenesis studies with a targeted M135-knockout MV construct (vMyx135KO) indicate that the deletion of M135R severely attenuates MV pathogenesis in the European rabbit. We propose that M135R is an important immunomodulatory virulence factor for myxomatosis but that the target immune ligand is not from the predicted type I interferon family and remains to be identified.
Insights
Myxoma virus protein M135R was predicted to block interferon signaling but does not. However, M135R is crucial for myxoma virus virulence, suggesting it targets an unknown immune factor.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Myxoma virus (MV) M135R protein was predicted to mimic the host interferon-alpha/beta receptor (IFN-alpha/beta-R).
- This prediction was based on sequence similarity to vaccinia virus B18R, a known inhibitor of type I interferons.
- M135R is significantly smaller than B18R, with other poxvirus homologs aligning only to its N-terminal half.
Purpose of the Study:
- To investigate the function of MV M135R protein.
- To determine if M135R interacts with and inhibits type I interferons.
- To assess the role of M135R in MV pathogenesis.
Main Methods:
- Peptide antibodies were generated against M135R for immunoblotting and immunofluorescence.
- Binding and inhibition assays were performed to test M135R interaction with IFN-alpha/beta.
- Pathogenesis studies utilized a M135R-knockout MV construct (vMyx135KO) in European rabbits.
Main Results:
- M135R is expressed as an early gene, is an N-linked glycoprotein, and localizes to the cell surface without secretion.
- Contrary to predictions, M135R did not bind or inhibit IFN-alpha/beta in vitro.
- Deletion of M135R severely attenuated MV pathogenesis in rabbits.
Conclusions:
- M135R functions as an important immunomodulatory virulence factor for myxomatosis.
- The target immune ligand of M135R is not type I interferon.
- The specific immune target of M135R remains to be identified.
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