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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Interruption of p53-MDM2 Interaction by Nutlin-3a in Human Lymphoma Cell Models Initiates a Cell-Dependent Global
Konstantina Psatha1,2,3,4, Laxmikanth Kollipara5, Elias Drakos2
1Institute of Molecular Biology and Biotechnology, Foundation of Research and Technology, 70013 Heraklion, Greece.
Abstract:
In most lymphomas, p53 signaling pathway is inactivated by various mechanisms independent to p53 gene mutations or deletions. In many cases, p53 function is largely regulated by alterations in the protein abundance levels by the action of E3 ubiquitin-protein ligase MDM2, targeting p53 to proteasome-mediated degradation. In the present study, an integrating transcriptomics and proteomics analysis was employed to investigate the effect of p53 activation by a small-molecule MDM2-antagonist, nutlin-3a, on three lymphoma cell models following p53 activation. Our analysis revealed a system-wide nutlin-3a-associated effect in all examined lymphoma types, identifying in total of 4037 differentially affected proteins involved in a plethora of pathways, with significant heterogeneity among lymphomas. Our findings include known p53-targets and novel p53 activation effects, involving transcription, translation, or degradation of protein components of pathways, such as a decrease in key members of PI3K/mTOR pathway, heat-shock response, and glycolysis, and an increase in key members of oxidative phoshosphorylation, autophagy and mitochondrial translation. Combined inhibition of HSP90 or PI3K/mTOR pathway with nutlin-3a-mediated p53-activation enhanced the apoptotic effects suggesting a promising strategy against human lymphomas. Integrated omic profiling after p53 activation offered novel insights on the regulatory role specific proteins and pathways may have in lymphomagenesis.
Insights
MDM2 inhibition reactivates the p53 pathway in lymphoma cells, altering numerous protein levels and pathways. Combining MDM2 antagonists with HSP90 or PI3K/mTOR inhibitors enhances apoptosis, offering a potential lymphoma treatment strategy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The p53 signaling pathway is frequently inactivated in lymphomas through mechanisms beyond direct gene mutation.
- MDM2 (E3 ubiquitin-protein ligase) regulates p53 stability by targeting it for proteasomal degradation, thus controlling p53 function.
Purpose of the Study:
- To investigate the system-wide effects of p53 activation using the MDM2 antagonist nutlin-3a in lymphoma cell models.
- To identify novel p53 targets and affected pathways in response to MDM2 inhibition.
Main Methods:
- Integrated transcriptomics and proteomics analysis was performed on three lymphoma cell models.
- Cells were treated with nutlin-3a to activate the p53 pathway.
Main Results:
- Nutlin-3a treatment induced a system-wide response across all lymphoma types, affecting 4037 proteins.
- Significant heterogeneity in pathway alterations was observed among different lymphoma subtypes.
- Key pathways modulated included decreased PI3K/mTOR signaling, heat-shock response, and glycolysis, alongside increased oxidative phosphorylation, autophagy, and mitochondrial translation.
Conclusions:
- Combined inhibition of HSP90 or PI3K/mTOR with nutlin-3a-mediated p53 activation significantly enhanced apoptosis in lymphoma cells.
- Integrated omic profiling provides novel insights into protein and pathway regulation in lymphomagenesis, suggesting promising therapeutic strategies.
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