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Restoration of Endogenous Retrovirus Infectivity Impacts Mouse Cancer Models
Eleonora Ottina1, Prisca Levy1, Urszula Eksmond1
1Retroviral Immunology, The Francis Crick Institute, London, UK.
Abstract:
Mouse models have been instrumental in establishing fundamental principles of cancer initiation and progression and continue to be invaluable in the discovery and further development of cancer therapies. Nevertheless, important aspects of human disease are imperfectly approximated in mouse models, notably the involvement of endogenous retroviruses (ERVs). Replication-defective ERVs, present in both humans and mice, may affect tumor development and antitumor immunity through mechanisms not involving infection. Here, we revealed an adverse effect of murine ERVs with restored infectivity on the behavior of mouse cancer models. In contrast to human cancer, where infectious ERVs have never been detected, we found that ERV infectivity was frequently restored in transplantable, as well as genetic, mouse cancer models. Such replication-competent, ERV-derived retroviruses were responsible for unusually high expression of retroviral nucleic acids and proteins in mouse cancers. Infectious ERV-derived retroviruses produced by mouse cancer cells could directly infect tumor-infiltrating host immune cells and fundamentally modified the host's immune defenses to cancer, as well as the outcome of immunotherapy. Therefore, infectious retroviruses, variably arising in mouse cancer models, but not in human cancer, have the potential to confound many immunologic studies and should be considered as a variable, if not altogether avoided. Cancer Immunol Res; 6(11); 1292-300. ©2018 AACR.
Insights
Infectious endogenous retroviruses (ERVs) can emerge in mouse cancer models, altering tumor immunity and immunotherapy outcomes. Researchers suggest these infectious ERVs, not found in human cancers, may confound study results.
Area of Science:
- Immunology
- Oncology
- Virology
Background:
- Mouse models are crucial for cancer research, but may not fully replicate human disease aspects.
- Endogenous retroviruses (ERVs) are present in humans and mice, with replication-defective forms potentially influencing cancer.
- The role of infectious ERVs in cancer, particularly in mouse models, is not well understood.
Purpose of the Study:
- To investigate the impact of restored ERV infectivity in mouse cancer models.
- To determine if infectious ERVs affect tumor development, host immunity, and immunotherapy response.
- To highlight potential confounds in mouse cancer research due to infectious ERVs.
Main Methods:
- Analysis of transplantable and genetic mouse cancer models for ERV infectivity.
- Detection of retroviral nucleic acids and proteins in mouse tumors.
- Assessment of ERV effects on tumor-infiltrating immune cells and immunotherapy outcomes.
Main Results:
- Murine ERVs frequently regained infectivity in mouse cancer models, unlike human cancers.
- Replication-competent ERVs led to high expression of retroviral components in mouse tumors.
- Infectious ERVs altered host immune responses and the efficacy of immunotherapy in mice.
Conclusions:
- Infectious ERVs can arise in mouse cancer models and adversely affect study outcomes.
- These findings suggest infectious ERVs are a significant variable in mouse cancer immunology research.
- Researchers should consider or avoid infectious ERVs in mouse models to ensure accurate results.
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