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MDM2-dependent ubiquitination of nuclear and cytoplasmic P53
1Harvard School of Public Health, Department of Cancer Cell Biology, Boston, Massachusetts 02115, USA.
Abstract:
Wild-type p53 is stabilized and accumulates in the nucleus of DNA damaged cells. The effect of stabilizing p53 is to inhibit cell growth, either through a G1 cell cycle arrest or apoptotic cell death. MDM2 can inhibit p53 activity, in part, by promoting its rapid degradation through the ubiquitin proteolysis pathway. In the current study, MDM2-mediated degradation of p53 was partially inhibited in cells treated with leptomycin B (LMB), a specific inhibitor of nuclear export. In contrast, levels of ubiquitinated p53 increased in LMB-treated cells, indicating that nuclear export is not required for p53 ubiquitination. To investigate this further, p53 mutants were generated which localize to either the nucleus or cytoplasm, and their susceptibility to MDM2-mediated ubiquitination was assessed. p53 mutants that localized to either the nucleus or the cytoplasm were efficiently ubiquitinated, and their steady-state levels decreased, when coexpressed with MDM2. In addition, an MDM2-mutant that localized to the cytoplasm was able to ubiquitinate and degrade a p53 mutant which was similarly localized in the cytoplasm. Our results indicate that nuclear export is not required for p53 ubiquitination, and that p53 proteins that localize to either the nucleus or cytoplasm can be ubiquitinated and degraded by MDM2.
Insights
Nuclear export is not required for p53 ubiquitination. The tumor suppressor p53 protein can be ubiquitinated and degraded by MDM2 in both the nucleus and cytoplasm.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Wild-type p53 stabilizes and accumulates in DNA-damaged cells, inhibiting cell growth via G1 arrest or apoptosis.
- MDM2 inhibits p53 activity by promoting its degradation through the ubiquitin-proteolysis pathway.
Purpose of the Study:
- To investigate the role of nuclear export in MDM2-mediated p53 ubiquitination and degradation.
- To determine if p53 localization (nucleus vs. cytoplasm) affects its susceptibility to MDM2-mediated degradation.
Main Methods:
- Treatment of cells with leptomycin B (LMB), a nuclear export inhibitor.
- Generation and analysis of p53 and MDM2 mutants with specific subcellular localization.
- Assessment of p53 ubiquitination and steady-state levels in the presence of MDM2.
Main Results:
- Leptomycin B partially inhibited MDM2-mediated p53 degradation but increased ubiquitinated p53 levels, suggesting nuclear export is not required for ubiquitination.
- Both nuclear and cytoplasmic p53 mutants were efficiently ubiquitinated and degraded by MDM2.
- A cytoplasmic MDM2 mutant could ubiquitinate and degrade a cytoplasmic p53 mutant.
Conclusions:
- Nuclear export is not a prerequisite for p53 ubiquitination by MDM2.
- p53 proteins in both the nucleus and cytoplasm are substrates for MDM2-mediated ubiquitination and degradation.