A dual role of p53 in the control of autophagy

Ezgi Tasdemir1, M Chiara Maiuri, Eugenia Morselli

  • 1INSERM, U848, Villejuif, France.

Autophagy
|July 8, 2008
PubMed

Insights

Inactivation of p53 triggers autophagy, while nuclear p53 induces it. Cytoplasmic p53 acts as a repressor, highlighting p53

Area of Science:

  • Cellular Biology
  • Molecular Biology
  • Oncology

Background:

  • Genotoxic stress can activate autophagy through p53.
  • p53 is known to regulate autophagy-inducing genes.
  • Recent findings suggest p53 inactivation also triggers autophagy.

Purpose of the Study:

  • To investigate the dual role of p53 in autophagy regulation.
  • To determine whether nuclear and cytoplasmic p53 have distinct functions in autophagy.
  • To explore the mechanism by which p53 influences autophagy.

Main Methods:

  • Utilized knockout, knockdown, and pharmacological inhibition of p53 in human and mouse cells.
  • Observed autophagy markers such as p62/SQSTM1 depletion and LC3 lipidation.
  • Employed enucleated cells and p53 mutants with altered localization to assess p53's role.

Main Results:

  • p53 inactivation (knockout, knockdown, inhibition) consistently triggered autophagy markers in vitro and in vivo.
  • Cytoplasmic p53, independent of nuclear function, was found to regulate autophagy.
  • Wild-type p53 and nuclear-excluded p53 mutants inhibited autophagy, while nucleus-restricted mutants did not.
  • Autophagy inducers promoted p53 degradation via HDM2; inhibiting HDM2 prevented p53 depletion and autophagy.
  • A stabilized p53 mutant (lacking HDM2 site) was more effective in suppressing autophagy.

Conclusions:

  • p53 exhibits a dual role in autophagy control.
  • Nuclear p53 can induce autophagy transcriptionally.
  • Cytoplasmic p53 acts as a master repressor of autophagy.

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