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Farnesyl protein transferase inhibitors as potential cancer chemopreventives

G J Kelloff1, R A Lubet, J R Fay

  • 1Chemoprevention Branch, National Cancer Institute, Bethesda, Maryland, Rockville, MD 20852, USA.

Insights

Disrupting the Ras signaling pathway via farnesyl protein transferase (FPT) inhibitors shows promise for cancer chemoprevention. These inhibitors target Ras farnesylation, crucial for cancer cell proliferation, and require rigorous testing for efficacy and safety.

Area of Science:

  • Oncology
  • Molecular Biology
  • Drug Discovery

Background:

  • Deregulated signal transduction pathways are key targets for cancer chemoprevention.
  • Ras proteins are central to signal transduction, linking plasma membrane signals to nuclear effectors.
  • Disrupting Ras signaling pathways offers a significant strategy for cancer chemoprevention.

Purpose of the Study:

  • To explore the potential of inhibiting Ras protein farnesylation as a cancer chemoprevention strategy.
  • To identify and evaluate farnesyl protein transferase (FPT) inhibitors for their ability to block Ras-dependent proliferation.
  • To establish criteria and testing strategies for developing effective and safe FPT inhibitors.

Main Methods:

  • In vitro determination of FPT inhibitory activity.
  • Evaluation of inhibitor selectivity against other prenyl transferases and FPT-utilizing enzymes.
  • Assessment of Ras-mediated effects in intact cells and in vivo models (e.g., tumor xenografts).
  • Testing chemopreventive efficacy in carcinogen-induced animal models of lung, colon, and pancreas cancer.

Main Results:

  • Farnesyl protein transferase (FPT) inhibitors have been identified through screening and rational design.
  • Numerous FPT inhibitors demonstrate potential for inhibiting Ras-dependent proliferative activity.
  • Specific requirements for effective Ras farnesylation inhibitors include specificity, potency, and in vivo activity.

Conclusions:

  • Inhibiting Ras protein farnesylation is a viable strategy for cancer chemoprevention.
  • Targeting farnesyl protein transferase (FPT) can disrupt Ras-dependent proliferation in cancerous and precancerous lesions.
  • A comprehensive testing strategy is essential for developing potent, selective, and non-toxic FPT inhibitors for clinical use.

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