Nrf Transcription Factors in Keratinocytes Are Essential for Skin Tumor Prevention but Not for Wound Healing
- 1 May 2006
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 26 (10) , 3773-3784
- https://doi.org/10.1128/mcb.26.10.3773-3784.2006
Abstract
The Nrf2 transcription factor is a key player in the cellular stress response through its regulation of cytoprotective genes. In this study we determined the role of Nrf2-mediated gene expression in keratinocytes for skin development, wound repair, and skin carcinogenesis. To overcome compensation by the related Nrf1 and Nrf3 proteins, we expressed a dominant-negative Nrf2 mutant (dnNrf2) in the epidermis of transgenic mice. The functionality of the transgene product was verified in vivo using mice doubly transgenic for dnNrf2 and an Nrf2-responsive reporter gene. Surprisingly, no abnormalities of the epidermis were observed in dnNrf2-transgenic mice, and even full-thickness skin wounds healed normally. However, the onset, incidence, and multiplicity of chemically induced skin papillomas were strikingly enhanced, whereas the progression to squamous cell carcinomas was unaltered. We provide evidence that the enhanced tumorigenesis results from reduced basal expression of cytoprotective Nrf target genes, leading to accumulation of oxidative damage and reduced carcinogen detoxification. Our results reveal a crucial role of Nrf-mediated gene expression in keratinocytes in the prevention of skin tumors and suggest that activation of Nrf2 in keratinocytes is a promising strategy to prevent carcinogenesis of this highly exposed organ.Keywords
This publication has 62 references indexed in Scilit:
- Multistep skin cancer in mice as a model to study the evolution of cancer cellsSeminars in Cancer Biology, 2005
- Psoriasis-like skin disease and arthritis caused by inducible epidermal deletion of Jun proteinsNature, 2005
- Synthetic Triterpenoids Cooperate with Tumor Necrosis Factor–Related Apoptosis-Inducing Ligand to Induce Apoptosis of Breast Cancer CellsCancer Research, 2005
- CDK4 regulation by TNFR1 and JNK is required for NF-κB–mediated epidermal growth controlThe Journal of cell biology, 2005
- Genetic dissection of systemic autoimmune disease in Nrf2-deficient micePhysiological Genomics, 2004
- NF-κB RelA opposes epidermal proliferation driven by TNFR1 and JNKGenes & Development, 2004
- NF-κB blockade and oncogenic Ras trigger invasive human epidermal neoplasiaNature, 2003
- Inflammation and cancerNature, 2002
- Haem oxygenase-1: a novel player in cutaneous wound repair and psoriasis?Biochemical Journal, 2001
- Long-Term Culture of Murine Epidermal KeratinocytesJournal of Investigative Dermatology, 1999