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Updated: May 22, 2025

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Dependence on Mdm2 for Mdm4 inhibition of p53 activity
Shunbin Xiong1, Yun Zhang2, Xin Zhou3
1Department of Genetics, UT M.D. Anderson Cancer Center, Houston, TX, USA.
Abstract:
Both Mdm2 and Mdm4 inhibit p53 activity by masking of its transcriptional activation domain. In addition, Mdm2 functions as an E3 ubiquitin ligase, targeting p53 for degradation. The amino terminus of Mdm4 binds wild type and mutant p53 while its RING domain, which lacks E3 ligase activity, is required for heterodimerization with Mdm2. To determine how these domains of Mdm4 regulate p53, we generated mouse models with either a deletion of the Mdm4 RING domain (Mdm4ΔR) or all of Mdm4 (Mdm4─) on a hypomorphic (p53neo) background. Mdm4ΔR mice exhibited elevated p53 levels and activity, albeit to a lesser extent than mice with complete Mdm4 loss, indicating that the amino terminus of Mdm4 contributes to p53 inhibition. Moreover, in the absence of Mdm2, neither the deletion of the Mdm4 RING domain nor the complete loss of Mdm4 further increased p53 protein levels on a mutant p53 background, indicating that Mdm4 modulates Mdm2 in its regulation of p53 stability. Collectively, our findings suggest that Mdm4 contributes to p53 inhibition by modulating Mdm2 activity via both its amino terminus and RING domains.
Insights
Mdm4 inhibits the tumor suppressor p53 by interacting with Mdm2. Mouse models reveal Mdm4
Area of Science:
- Molecular Biology
- Cancer Biology
- Genetics
Background:
- Mdm2 and Mdm4 are key negative regulators of the tumor suppressor p53.
- Mdm2 ubiquitinates p53 targeting it for degradation.
- Mdm4 inhibits p53 transcriptional activity and heterodimerizes with Mdm2.
Purpose of the Study:
- To elucidate the roles of Mdm4's amino terminus and RING domain in p53 regulation.
- To understand how Mdm4 modulates Mdm2's function in p53 inhibition.
Main Methods:
- Generation of mouse models with specific Mdm4 domain deletions (Mdm4ΔR) or complete loss (Mdm4─).
- Analysis of p53 levels and activity in these mouse models.
- Investigation of Mdm4-Mdm2 interactions in p53 regulation.
Main Results:
- Mdm4ΔR mice showed increased p53 levels and activity, less than Mdm4─ mice.
- The amino terminus of Mdm4 contributes to p53 inhibition.
- Mdm4 modulates Mdm2's regulation of p53 stability, especially on a mutant p53 background.
Conclusions:
- Mdm4 inhibits p53 through its amino terminus and RING domain.
- Mdm4's inhibitory function on p53 is partly mediated by modulating Mdm2 activity.
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