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Updated: Nov 7, 2025

Engineering Antiviral Agents via Surface Plasmon Resonance
Published on: June 14, 2022
N-Linked Glycosylation on Anthrax Toxin Receptor 1 Is Essential for Seneca Valley Virus Infection
Nadishka Jayawardena1,2, Linde A Miles3, Laura N Burga1
1Department of Microbiology and Immunology, University of Otago, Dunedin 9016, New Zealand.
Abstract:
Seneca Valley virus (SVV) is a picornavirus with potency in selectively infecting and lysing cancerous cells. The cellular receptor for SVV mediating the selective tropism for tumors is anthrax toxin receptor 1 (ANTXR1), a type I transmembrane protein expressed in tumors. Similar to other mammalian receptors, ANTXR1 has been shown to harbor N-linked glycosylation sites in its extracellular vWA domain. However, the exact role of ANTXR1 glycosylation on SVV attachment and cellular entry was unknown. Here we show that N-linked glycosylation in the ANTXR1 vWA domain is necessary for SVV attachment and entry. In our study, tandem mass spectrometry analysis of recombinant ANTXR1-Fc revealed the presence of complex glycans at N166, N184 in the vWA domain, and N81 in the Fc domain. Symmetry-expanded cryo-EM reconstruction of SVV-ANTXR1-Fc further validated the presence of N166 and N184 in the vWA domain. Cell blocking, co-immunoprecipitation, and plaque formation assays confirmed that deglycosylation of ANTXR1 prevents SVV attachment and subsequent entry. Overall, our results identified N-glycosylation in ANTXR1 as a necessary post-translational modification for establishing stable interactions with SVV. We anticipate our findings will aid in selecting patients for future cancer therapeutics, where screening for both ANTXR1 and its glycosylation could lead to an improved outcome from SVV therapy.
Insights
N-linked glycosylation of anthrax toxin receptor 1 (ANTXR1) is essential for Seneca Valley virus (SVV) to attach to and enter cancer cells. This finding may improve patient selection for SVV cancer therapy.
Area of Science:
- Virology
- Molecular Biology
- Cancer Research
Background:
- Seneca Valley virus (SVV) selectively infects and lyses cancer cells.
- Anthrax toxin receptor 1 (ANTXR1) mediates SVV's tumor tropism.
- ANTXR1 possesses N-linked glycosylation sites, but their role in SVV infection was unclear.
Purpose of the Study:
- To investigate the role of ANTXR1 N-linked glycosylation in SVV attachment and cellular entry.
- To determine if glycosylation of ANTXR1 is a prerequisite for SVV interaction.
Main Methods:
- Tandem mass spectrometry to identify glycans on recombinant ANTXR1-Fc.
- Cryo-electron microscopy (cryo-EM) to visualize SVV-ANTXR1-Fc complex.
- Cell blocking, co-immunoprecipitation, and plaque assays to assess SVV infection after ANTXR1 deglycosylation.
Main Results:
- Complex glycans were identified at specific sites (N166, N184) in the ANTXR1 vWA domain and (N81) in the Fc domain.
- Cryo-EM confirmed the presence of N166 and N184 glycosylation.
- Deglycosylation of ANTXR1 abrogated SVV attachment and entry, as evidenced by cell blocking and plaque assays.
Conclusions:
- N-linked glycosylation of ANTXR1 is a critical post-translational modification for SVV binding and entry.
- These findings highlight ANTXR1 glycosylation as a potential biomarker for patient selection in SVV-based cancer therapeutics.
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