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Updated: Aug 20, 2026

Studying Chronic Exposure of Mice to Ultraviolet B Radiation
Published on: August 19, 2025
SAGE profiling of UV-induced mouse skin squamous cell carcinomas, comparison with acute UV irradiation effects
Joyce E Rundhaug1, Kathleen A Hawkins, Amy Pavone
1Department of Carcinogenesis, The University of Texas M. D. Anderson Cancer Center, Science Park-Research Division, Smithville, Texas 78957, USA.
Abstract:
Ultraviolet (UV) irradiation is the primary environmental insult responsible for the development of most common skin cancers. To better understand the multiple molecular events that contribute to the development of UV-induced skin cancer, in a first study, serial analysis of gene expression (SAGE) was used to compare the global gene expression profiles of normal SKH-1 mice epidermis with that of UV-induced squamous cell carcinomas (SCCs) from SKH-1 mice. More than 200 genes were found to be differentially expressed in SCCs compared to normal skin (P < 0.0005 level of significance). As expected, genes related to epidermal proliferation and differentiation were deregulated in SCCs relative to normal skin. However, various novel genes, not previously associated with skin carcinogenesis, were also identified as deregulated in SCCs. Northern blot analyses on various selected genes validated the SAGE findings: caspase-14 (reduced 8.5-fold in SCCs); cathepsins D and S (reduced 3-fold and increased 11.3-fold, respectively, in SCCs); decorin, glutathione S-transferase omega-1, hypoxia-inducible factor 1 alpha, insulin-like growth factor binding protein-7, and matrix metalloproteinase-13 (increased 18-, 12-, 12-, 18.3-, and 11-folds, respectively, in SCCs). Chemokine (C-C motif), ligand 27 (CCL27), which was found downregulated 12.7-fold in SCCs by SAGE, was also observed to be strongly downregulated 6-24 h after a single and multiple UV treatments. In a second independent study we compared the expression profile of UV-irradiated versus sham-treated SKH-1 epidermis. Interestingly, numerous genes determined to be deregulated 8 h after a single UV dose were also deregulated in SCCs. For instance, genes whose expression was upregulated both after acute UV-treated skin and SCCs included keratins 6 and 16, small proline-rich proteins, and S100 calcium binding protein A9. Studies like those described here do not only provide insights into genes and pathways involved in skin carcinogenesis but also allow us to identify early UV irradiation deregulated surrogate biomarkers of potential use in chemoprevention studies.
Insights
Ultraviolet (UV) irradiation drives skin cancer by altering gene expression. This study identified over 200 differentially expressed genes in UV-induced squamous cell carcinomas (SCCs), including novel targets and early UV-responsive genes for potential chemoprevention.
Area of Science:
- Dermatology and Molecular Biology
- Cancer Research
- Genomics and Bioinformatics
Background:
- Ultraviolet (UV) irradiation is a primary cause of skin cancers.
- Understanding the molecular mechanisms of UV-induced skin carcinogenesis is crucial for developing effective prevention and treatment strategies.
Purpose of the Study:
- To identify differentially expressed genes in UV-induced squamous cell carcinomas (SCCs) compared to normal skin.
- To investigate early gene expression changes in response to UV irradiation.
- To identify potential biomarkers for UV-induced skin cancer and chemoprevention.
Main Methods:
- Serial Analysis of Gene Expression (SAGE) to compare gene profiles of normal and cancerous SKH-1 mouse epidermis.
- Northern blot analysis to validate SAGE findings for selected genes.
- Comparison of gene expression profiles after acute UV irradiation versus SCCs.
Main Results:
- Over 200 genes were found to be differentially expressed in SCCs (P < 0.0005).
- Genes related to proliferation, differentiation, and novel pathways were deregulated.
- Early UV exposure (8 hours) induced changes in genes also found deregulated in SCCs, such as keratins 6 and 16, and S100 calcium binding protein A9.
Conclusions:
- Gene expression profiling reveals complex molecular events in UV-induced skin carcinogenesis.
- Identified genes, including downregulated caspase-14 and upregulated matrix metalloproteinase-13, offer insights into SCC development.
- Early UV-responsive genes may serve as valuable biomarkers for chemoprevention studies.
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