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Updated: Jul 3, 2026

Purification of Ubiquitinated p53 Proteins from Mammalian Cells
Published on: March 21, 2022
A dual role of p53 in the control of autophagy
Ezgi Tasdemir1, M Chiara Maiuri, Eugenia Morselli
1INSERM, U848, Villejuif, France.
Abstract:
Genotoxic stress can induce autophagy in a p53-dependent fashion and p53 can transactivate autophagy-inducing genes. We have observed recently that inactivation of p53 by deletion, depletion or inhibition can trigger autophagy. Thus, human and mouse cells subjected to knockout, knockdown or pharmacological inhibition of p53 manifest signs of autophagy such as depletion of p62/SQSTM1, LC3 lipidation, redistribution of GFP-LC3 in cytoplasmic puncta, and accumulation of autophagosomes and autolysosomes, both in vitro and in vivo. Inhibition of p53 causes autophagy in enucleated cells, indicating that the cytoplasmic, non-nuclear pool of p53 can regulate autophagy. Accordingly, retransfection of p53(-/-) cells with wild-type p53 as well as a p53 mutant that is excluded from the nucleus (due to the deletion of the nuclear localization sequence) can inhibit autophagy, whereas retransfection with a nucleus-restricted p53 mutant (in which the nuclear localization sequence has been deleted) does not inhibit autophagy. Several distinct autophagy inducers (e.g., starvation, rapamycin, lithium, tunicamycin and thapsigargin) stimulate the rapid degradation of p53. In these conditions, inhibition of the p53-specific E3 ubiquitin ligase HDM2 can avoid p53 depletion and simultaneously prevent the activation of autophagy. Moreover, a p53 mutant that lacks the HDM2 ubiquitinylation site and hence is more stable than wild-type p53 is particularly efficient in suppressing autophagy. In conclusion, p53 plays a dual role in the control of autophagy. On the one hand, nuclear p53 can induce autophagy through transcriptional effects. On the other hand, cytoplasmic p53 may act as a master repressor of autophagy.
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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