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Novel ß-HPV49 Transgenic Mouse Model of Upper Digestive Tract Cancer
Daniele Viarisio1, Karin Müller-Decker1, Paola Zanna1
1Deutsches Krebsforschungszentrum (DKFZ), Heidelberg, Germany.
Abstract:
The beta genus of human papillomaviruses (ß-HPV) includes approximately 50 different viral types that are subdivided into five species (ß-1 through ß-5). Nonmelanoma cancers may involve some ß-1 and ß-2 HPV types, but the biology of most ß-HPV types and their possible connections to human disease are still little characterized. In this study, we studied the effects of ß-3 type HPV49 in a novel transgenic (Tg) mouse model, using a cytokeratin K14 promoter to drive expression of the E6 and E7 genes from this virus in the basal skin epidermis and the mucosal epithelia of the digestive tract (K14 HPV49 E6/E7-Tg mice). Viral oncogene expression only marginally increased cellular proliferation in the epidermis of Tg animals, compared with wild-type littermates, and we observed no spontaneous tumor formation during their entire lifespan. However, we found that K14 HPV49 E6/E7-Tg mice were highly susceptible to upper digestive tract carcinogenesis upon initiation with 4-nitroquinoline 1-oxide (4NQO). This was a selective effect, as the same mice did not exhibit any skin lesions after chronic UV irradiation. Opposite results were observed in an analogous Tg model expressing the ß-2 HPV38 E6 and E7 oncogenes at the same anatomic sites. While these mice were highly susceptible to UV-induced skin carcinogenesis, as previously shown, they were little affected by 4NQO treatment. Overall, our findings highlight important differences in the biologic properties of certain ß-type HPV that affect their impact on carcinogenesis in an anatomic site-specific manner. Cancer Res; 76(14); 4216-25. ©2016 AACR.
Insights
Beta-HPV49 oncogenes promote digestive tract cancer but not skin cancer in mice. In contrast, Beta-HPV38 oncogenes drive skin cancer but not digestive tract cancer, revealing site-specific HPV roles in carcinogenesis.
Area of Science:
- Oncology
- Virology
- Carcinogenesis
Background:
- The beta genus of human papillomaviruses (ß-HPV) comprises about 50 types, with limited understanding of most types' biology and disease links.
- While some ß-1 and ß-2 HPV types are implicated in nonmelanoma cancers, the role of other ß-HPV types remains largely uncharacterized.
Purpose of the Study:
- To investigate the oncogenic potential of the ß-3 type HPV49 E6 and E7 genes in a transgenic mouse model.
- To compare the carcinogenic effects of HPV49 with HPV38 in different anatomical sites and in response to distinct carcinogens.
Main Methods:
- Generation of K14 HPV49 E6/E7-Tg mice expressing viral oncogenes in skin and digestive tract epithelia.
- Assessment of spontaneous tumor formation, proliferation, and susceptibility to 4-nitroquinoline 1-oxide (4NQO) or UV irradiation.
Main Results:
- K14 HPV49 E6/E7-Tg mice showed minimal epidermal proliferation and no spontaneous tumors but were highly susceptible to 4NQO-induced upper digestive tract cancer.
- These mice were resistant to UV-induced skin carcinogenesis.
- An analogous K14 HPV38 E6/E7-Tg model showed susceptibility to UV-induced skin cancer but not 4NQO-induced digestive tract cancer.
Conclusions:
- Beta-HPV types exhibit distinct oncogenic properties influencing carcinogenesis in a site-specific manner.
- HPV49 primarily contributes to digestive tract carcinogenesis, while HPV38 is linked to skin carcinogenesis.
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