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.

Molecular Carcinogenesis
|November 18, 2004
PubMed

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.