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Oncogenic ras activates the ARF-p53 pathway to suppress epithelial cell transformation

A W Lin1, S W Lowe

  • 1Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.

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.

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