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Updated: Dec 28, 2025

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
MDM2 and MDMX promote ferroptosis by PPARα-mediated lipid remodeling
Divya Venkatesh1, Nicholas A O'Brien1, Fereshteh Zandkarimi1
1Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Abstract:
MDM2 and MDMX, negative regulators of the tumor suppressor p53, can work separately and as a heteromeric complex to restrain p53's functions. MDM2 also has pro-oncogenic roles in cells, tissues, and animals that are independent of p53. There is less information available about p53-independent roles of MDMX or the MDM2-MDMX complex. We found that MDM2 and MDMX facilitate ferroptosis in cells with or without p53. Using small molecules, RNA interference reagents, and mutant forms of MDMX, we found that MDM2 and MDMX, likely working in part as a complex, normally facilitate ferroptotic death. We observed that MDM2 and MDMX alter the lipid profile of cells to favor ferroptosis. Inhibition of MDM2 or MDMX leads to increased levels of FSP1 protein and a consequent increase in the levels of coenzyme Q10, an endogenous lipophilic antioxidant. This suggests that MDM2 and MDMX normally prevent cells from mounting an adequate defense against lipid peroxidation and thereby promote ferroptosis. Moreover, we found that PPARα activity is essential for MDM2 and MDMX to promote ferroptosis, suggesting that the MDM2-MDMX complex regulates lipids through altering PPARα activity. These findings reveal the complexity of cellular responses to MDM2 and MDMX and suggest that MDM2-MDMX inhibition might be useful for preventing degenerative diseases involving ferroptosis. Furthermore, they suggest that MDM2/MDMX amplification may predict sensitivity of some cancers to ferroptosis inducers.
Insights
MDM2 and MDMX proteins promote a cell death pathway called ferroptosis, even without the tumor suppressor p53. Inhibiting these proteins may help treat diseases linked to ferroptosis.
Area of Science:
- Cellular Biology
- Oncology
- Biochemistry
Background:
- MDM2 and MDMX are negative regulators of the tumor suppressor p53.
- MDM2 has p53-independent roles, but MDMX and the MDM2-MDMX complex's p53-independent functions are less understood.
- Ferroptosis is a regulated form of cell death implicated in various diseases.
Purpose of the Study:
- To investigate the p53-independent roles of MDM2 and MDMX in regulating ferroptosis.
- To elucidate the molecular mechanisms by which MDM2 and MDMX influence ferroptosis.
- To explore the therapeutic potential of targeting MDM2 and MDMX in diseases involving ferroptosis.
Main Methods:
- Utilized small molecules, RNA interference, and mutant MDMX forms.
- Analyzed cellular lipid profiles and protein expression (FSP1, coenzyme Q10).
- Assessed the role of PPARα activity in MDM2/MDMX-mediated ferroptosis.
Main Results:
- MDM2 and MDMX were found to facilitate ferroptosis in a p53-independent manner, likely through their complex.
- These proteins alter cellular lipid profiles to promote ferroptosis by suppressing FSP1 and coenzyme Q10 levels.
- PPARα activity is crucial for MDM2 and MDMX to induce ferroptosis, indicating regulation of lipid metabolism.
Conclusions:
- MDM2 and MDMX normally inhibit cellular defenses against lipid peroxidation, thereby promoting ferroptosis.
- Targeting MDM2-MDMX may offer therapeutic strategies for degenerative diseases associated with ferroptosis.
- MDM2/MDMX amplification could predict cancer sensitivity to ferroptosis inducers.
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