The promise and obstacle of p53 as a cancer therapeutic agent

A C Willis1, X Chen

  • 1Department of Cell Biology, UAB Comprehensive Cancer Center, The University of Alabama at Birmingham, 35294, USA.

Insights

Restoring tumor suppressor p53 (p53) function is a promising cancer therapy. Strategies aim to reintroduce or stabilize p53, offering new hope against cancers with p53 mutations.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Genetics

Background:

  • The tumor suppressor gene p53 is inactivated in over 50% of human cancers.
  • Loss of p53 function promotes uncontrolled cell proliferation, a hallmark of cancer.
  • Restoring tumor suppressor gene activity is an emerging anti-cancer strategy.

Purpose of the Study:

  • To review therapeutic strategies aimed at restoring p53 tumor suppressor function in cancer cells.
  • To explore novel approaches targeting mutant p53 with oncogenic gain-of-function activity.

Main Methods:

  • Gene therapy approaches, including wild-type p53 introduction.
  • Small molecules to stabilize mutant p53 into an active conformation.
  • Strategies to prevent p53 degradation by cellular proteins.
  • Targeted killing of cancer cells with mutant p53 using oncolytic viruses or toxic gene products.

Main Results:

  • Multiple therapeutic avenues are being investigated to restore p53 function.
  • Approaches include gene replacement, protein stabilization, and targeted cell killing.
  • Novel strategies exploit mutant p53's oncogenic properties for selective cancer therapy.

Conclusions:

  • Restoration of p53 function represents a promising therapeutic strategy for a wide range of human cancers.
  • Despite existing challenges, p53-targeted therapies hold significant potential for cancer treatment.
  • Further optimization is needed for successful clinical translation of these innovative approaches.

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