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Inhibition of oncogene-mediated transformation by ectopic expression of p21Waf1 in NIH3T3 cells

P Michieli1, W Li, M V Lorenzi

  • 1Laboratory of Cellular and Molecular Biology, National Cancer Institute, Bethesda, Maryland 20892, USA.

Oncogene
|February 15, 1996
PubMed

Insights

The p21Waf1 protein inhibits cyclin-dependent kinases, suppressing oncogene-driven cell transformation. It selectively blocks Ras-mediated transformation by inhibiting E2F-driven gene transcription without affecting cell growth.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Oncology

Background:

  • p53-regulated p21Waf1 is a cyclin-dependent kinase (CDK) inhibitor.
  • CDK inhibitors are investigated for tumor-suppressive properties.
  • Oncogene-mediated cellular transformation is a key step in cancer development.

Purpose of the Study:

  • To investigate the tumor-suppressive potential of p21Waf1.
  • To determine if p21Waf1 can interfere with oncogene-induced cellular transformation.
  • To elucidate the mechanism by which p21Waf1 inhibits transformation.

Main Methods:

  • NIH3T3 cell system for transformation assays.
  • Cotransfection of p21Waf1 (waf1) with oncogenes (e.g., Ras).
  • Analysis of focus formation, anchorage-independent growth, and gene transcription (E2F and serum-responsive elements).
  • Immunofluorescence to determine protein localization.

Main Results:

  • p21Waf1 potently inhibited Ras- and other oncogene-induced focus formation in NIH3T3 cells.
  • The N-terminal half of p21Waf1 (N-p21Waf1) was sufficient for inhibiting Ras-induced transformation, while the C-terminal half (C-p21Waf1) had no effect.
  • p21Waf1 inhibited Ras-mediated anchorage-independent colony formation but not overall cell growth or cell cycle distribution.
  • p21Waf1 inhibited Ras-induced transcription from an E2F-responsive element but not a serum-responsive element.

Conclusions:

  • p21Waf1 effectively suppresses oncogene-mediated cellular transformation.
  • p21Waf1 acts downstream of early Ras-induced transcriptional events and upstream of E2F-controlled gene transcription.
  • The mechanism involves the inhibition of E2F-driven transcription of S phase genes, suggesting a role in cell cycle control during transformation.

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