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Updated: May 24, 2026

Two- and Three-Dimensional Live Cell Imaging of DNA Damage Response Proteins
Published on: September 28, 2012
MDM4 enhances p53 stability by promoting an active conformation of the protein upon DNA damage
Giusy Di Conza1, Francesca Mancini, Marianna Buttarelli
1National Research Council of Italy, Cell Biology and Neurobiology Institute, Rome, Italy.
Abstract:
Stabilization of p53 protein is an important step in the activation of its function. p53 levels are regulated by ubiquitin-dependent and -independent degradation pathways. MDM4 (MDMX) is an important regulator of p53, able to both stimulate and antagonize p53 degradation. Both of these activities have been attributed to the ability of MDM4 to potentiate or antagonize the function of MDM2, the main ubiquitin ligase of p53, depending on their relative levels. Here, we have investigated the stabilizing function of endogenous MDM4 using genetic models of knockout MEFs and RNA interference in human non-transformed cell lines. Our data demonstrate that MDM4 is able to stabilize p53, protecting it from proteasome-mediated degradation in a MDM2- and ubiquitin-independent manner. Upon DNA damage, MDM4 is associated to p53 independently of MDM2 and promotes a conformational change of the protein toward an active form. This correlates with a decreased association of p53 to the proteasome and increased protein levels. The association between MDM4 and p53 is evidenced in the cytoplasmic compartment, supporting the role of cytoplasmic stabilization of p53 during its activation. This work demonstrates that the ability of MDM4 to enhance p53 stability is actually a specific property of MDM4 accomplished upon DNA damage. In addition, these data support the hypothesis of distinct functions of MDM4 under different growth conditions.
Insights
MDM4 protein stabilizes p53, protecting it from degradation independently of MDM2 and ubiquitin. This stabilization occurs in the cytoplasm upon DNA damage, promoting p53 activation.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- p53 protein stabilization is crucial for its function.
- p53 levels are regulated by degradation pathways, including ubiquitin-dependent and -independent mechanisms.
- MDM4 (MDMX) is a key regulator of p53, influencing its degradation via MDM2.
Purpose of the Study:
- To investigate the stabilizing function of endogenous MDM4 on p53.
- To elucidate the mechanisms by which MDM4 stabilizes p53.
- To determine the role of MDM4 in p53 activation upon DNA damage.
Main Methods:
- Genetic models using knockout mouse embryonic fibroblasts (MEFs).
- RNA interference in human non-transformed cell lines.
- Analysis of protein-protein interactions and cellular localization.
Main Results:
- MDM4 stabilizes p53, protecting it from proteasome-mediated degradation in a MDM2- and ubiquitin-independent manner.
- Upon DNA damage, MDM4 associates with p53 independently of MDM2, inducing a conformational change towards an active form.
- This stabilization occurs in the cytoplasm, correlating with decreased p53 association to the proteasome and increased protein levels.
Conclusions:
- MDM4 possesses a specific function in enhancing p53 stability upon DNA damage.
- MDM4-mediated p53 stabilization is independent of MDM2 and the ubiquitin-proteasome system.
- Distinct functions of MDM4 may exist under different cellular conditions, highlighting its complex role in p53 regulation.
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