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Published on: July 23, 2010
Nuclear export is required for degradation of endogenous p53 by MDM2 and human papillomavirus E6
1Department of Molecular Biology, Princeton University, Princeton, New Jersey 08544, USA.
Abstract:
The MDM2 oncoprotein targets the p53 tumor suppressor protein for degradation when the two proteins are expressed in cells. The regulation of p53 levels by MDM2 requires the ability of MDM2 to be exported from the nucleus by utilizing its nuclear export signal (NES). The drug leptomycin B (LMB) blocks the formation of nuclear export complexes consisting of CRM1, RanGTP, and NES-containing proteins. It is predicted that LMB should inhibit nuclear-cytoplasmic shuttling by MDM2 and subsequently stabilize p53. This communication demonstrates that LMB treatment of various cell lines led to an increase in the steady-state levels of the p53 protein as a result of an increase in its stability. The stabilized p53 protein localized to the nucleus and was an active transcription factor. These results indicate that the low steady-state levels of p53 in the absence of DNA damage result from p53's nuclear export for cytoplasmic degradation. LMB also led to p53 stabilization in cell lines that contain human papillomavirus (HPV) DNA and express HPV E6, a protein that targets p53 for degradation. MDM2 is not necessary for E6-dependent degradation of p53, as evidenced by the observation that E6 promoted p53 degradation in cells lacking endogenous MDM2. In addition, LMB reduced E6's ability to degrade p53 in the absence of MDM2, demonstrating that complete degradation of p53 by E6 requires nuclear export and therefore likely occurs in cytoplasmic proteasomes. These data suggest that the nuclear export of p53 to the cytoplasm for degradation is a general mechanism for regulating p53 levels.
Insights
Leptomycin B (LMB) stabilizes the p53 tumor suppressor protein by blocking its nuclear export for degradation. This indicates nuclear export is a key mechanism regulating p53 levels in cancer cells.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- The MDM2 oncoprotein degrades the p53 tumor suppressor protein.
- Nuclear export of MDM2, via its nuclear export signal (NES), is crucial for p53 regulation.
- Leptomycin B (LMB) inhibits nuclear export complexes involving CRM1, RanGTP, and NES-containing proteins.
Purpose of the Study:
- To investigate the effect of LMB on p53 protein levels and stability.
- To determine if nuclear export is a general mechanism for p53 regulation.
- To examine LMB's effect on p53 degradation mediated by HPV E6.
Main Methods:
- Treatment of various cell lines with LMB.
- Analysis of p53 protein levels and stability.
- Assessment of p53's transcriptional activity and localization.
- Evaluation of p53 degradation in cells with and without MDM2 and/or HPV E6.
Main Results:
- LMB treatment increased p53 protein levels and stability in diverse cell lines.
- Stabilized p53 localized to the nucleus and exhibited transcriptional activity.
- LMB reduced HPV E6-mediated p53 degradation, suggesting cytoplasmic proteasomal degradation.
- p53 nuclear export is a general mechanism for regulating its levels.
Conclusions:
- The low steady-state levels of p53 are primarily due to its nuclear export and subsequent cytoplasmic degradation.
- Inhibition of nuclear export stabilizes p53, enhancing its tumor-suppressive functions.
- Nuclear export serves as a critical pathway for p53 regulation, independent of MDM2 in the context of HPV E6.
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