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Human Ad19a/64 HERV-W Vaccines Uncover Immunosuppression Domain-Dependent T-Cell Response Differences in Inbred Mice
Isabella Skandorff1,2, Emeline Ragonnaud2,3, Jasmin Gille4
1Department of Immunology and Microbiology, University of Copenhagen, Blegdamsvej 3B, 2200 Copenhagen, Denmark.
Abstract:
Expression of human endogenous retrovirus type W (HERV-W) has been linked to cancer, making HERV-W antigens potential targets for therapeutic cancer vaccines. In a previous study, we effectively treated established tumours in mice by using adenoviral-vectored vaccines targeting the murine endogenous retrovirus envelope and group-specific antigen (Gag) of melanoma-associated retrovirus (MelARV) in combination with anti-PD-1. To break the immunological tolerance to MelARV, we mutated the immunosuppressive domain (ISD) of the MelARV envelope. However, reports on the immunogenicity of the HERV-W envelope, Syncytin-1, and its ISD are conflicting. To identify the most effective HERV-W cancer vaccine candidate, we evaluated the immunogenicity of vaccines encoding either the wild-type or mutated HERV-W envelope ISD in vitro and in vivo. Here, we show that the wild-type HERV-W vaccine generated higher activation of murine antigen-presenting cells and higher specific T-cell responses than the ISD-mutated counterpart. We also found that the wild-type HERV-W vaccine was sufficient to increase the probability of survival in mice subjected to HERV-W envelope-expressing tumours compared to a control vaccine. These findings provide the foundation for developing a therapeutic cancer vaccine targeting HERV-W-positive cancers in humans.
Insights
The wild-type human endogenous retrovirus type W (HERV-W) vaccine shows greater immune activation and improved survival in mice with HERV-W tumors compared to a mutated version, supporting its use in cancer vaccines.
Area of Science:
- Immunology
- Oncology
- Virology
Background:
- Human endogenous retrovirus type W (HERV-W) expression is associated with cancer.
- HERV-W antigens are potential targets for therapeutic cancer vaccines.
- Previous studies used mutated retroviral envelopes to enhance vaccine immunogenicity.
Purpose of the Study:
- To evaluate the immunogenicity of wild-type versus mutated HERV-W envelope immunosuppressive domain (ISD) for cancer vaccine development.
- To identify the most effective HERV-W cancer vaccine candidate.
Main Methods:
- In vitro and in vivo evaluation of HERV-W envelope vaccines (wild-type and ISD-mutated).
- Assessment of murine antigen-presenting cell activation and specific T-cell responses.
- Survival analysis in mice bearing HERV-W envelope-expressing tumors.
Main Results:
- The wild-type HERV-W vaccine induced higher murine antigen-presenting cell activation and specific T-cell responses compared to the ISD-mutated vaccine.
- The wild-type HERV-W vaccine significantly increased survival probability in mice with HERV-W tumors.
Conclusions:
- Wild-type HERV-W envelope vaccines are more immunogenic and effective than ISD-mutated versions.
- These findings support the development of HERV-W-based cancer vaccines for HERV-W-positive cancers.

