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Oncogenic ras activates the ARF-p53 pathway to suppress epithelial cell transformation
1Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.
Abstract:
Chemically induced skin carcinomas in mice are a paradigm for epithelial neoplasia, where oncogenic ras mutations precede p53 and INK4a/ARF mutations during the progression toward malignancy. To explore the biological basis for these genetic interactions, we studied cellular responses to oncogenic ras in primary murine keratinocytes. In wild-type keratinocytes, ras induced a cell-cycle arrest that displayed some features of terminal differentiation and was accompanied by increased expression of the p19(ARF), p16(INK4a), and p53 tumor suppressors. In ARF-null keratinocytes, ras was unable to promote cell-cycle arrest, induce differentiation markers, or properly activate p53. Although oncogenic ras produced a substantial increase in both nucleolar and nucleoplasmic p19(ARF), Mdm2 did not relocalize to the nucleolus or to nuclear bodies but remained distributed throughout the nucleoplasm. This result suggests that p19(ARF) can activate p53 without overtly affecting Mdm2 subcellular localization. Nevertheless, like p53-null keratinocytes, ARF-null keratinocytes were transformed by oncogenic ras and rapidly formed carcinomas in vivo. Thus, oncogenic ras can activate the ARF-p53 program to suppress epithelial cell transformation. Disruption of this program may be important during skin carcinogenesis and the development of other carcinomas.
Insights
Oncogenic ras triggers cell cycle arrest and tumor suppressor activation in skin cells. Loss of ARF or p53 allows ras-driven transformation and carcinoma development, highlighting the ARF-p53 pathway
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Chemically induced skin carcinomas in mice model epithelial neoplasia.
- Oncogenic ras mutations often precede p53 and INK4a/ARF mutations in cancer progression.
Purpose of the Study:
- Investigate cellular responses to oncogenic ras in primary murine keratinocytes.
- Elucidate the biological basis for genetic interactions between ras, p53, and INK4a/ARF.
Main Methods:
- Studied primary murine keratinocytes with and without ARF.
- Analyzed cell-cycle arrest, differentiation markers, tumor suppressor expression (p19ARF, p16INK4a, p53), and Mdm2 localization.
- Assessed keratinocyte transformation and carcinoma formation in vivo.
Main Results:
- In wild-type keratinocytes, ras induced cell-cycle arrest, differentiation, and increased p19ARF, p16INK4a, and p53.
- ARF-null keratinocytes failed to arrest, differentiate, or activate p53 in response to ras.
- ARF-null keratinocytes transformed and formed carcinomas upon oncogenic ras expression, similar to p53-null cells.
Conclusions:
- Oncogenic ras activates the ARF-p53 pathway to suppress epithelial cell transformation.
- Disruption of the ARF-p53 program is crucial in skin carcinogenesis and other carcinomas.