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Updated: Jun 24, 2026

Purification of Ubiquitinated p53 Proteins from Mammalian Cells
Published on: March 21, 2022
High affinity interaction of the p53 peptide-analogue with human Mdm2 and Mdmx
Anna Czarna1, Grzegorz M Popowicz, Aleksandra Pecak
1Max Planck Institute for Biochemistry, Martinsried, Germany.
Abstract:
The Mdm2 and Mdmx proteins are the principal negative regulators of the p53 tumor suppressor. Reactivation of p53 activity by disrupting the Mdm2/Mdmx-p53 interactions offers new possibilities for anticancer therapeutics. Here, we present crystal structures of two complexes, a p53-like mutant peptide with the N-terminal domains of Mdm2 and Mdmx, respectively. The structures reveal that the p53 mutant peptide (amino acid sequence: LTFEHYWAQLTS) assumes virtually identical conformations in both complexes despite the different shapes of the p53-binding pockets in these two proteins, has a more extended helical nature compared to the Mdm2-bound wild-type p53 peptide, and does not disturb the native folds of Mdm2 or Mdmx. The extension of the helical structure in the mutant p53 peptide greatly improves its binding to Mdm2 and Mdmx. The fluorescence polarization assay that we have developed using this peptide indicates the affinities towards Mdm2 of 3.6 nM and for Mdmx of 6.1 nM, compared to the low micromolar binding of a similar length wild-type p53 peptide to Mdm2/Mdmx. Our assay does not require expensive non-native amino acids, and allows measurements of the interaction with both Mdm2 and Mdmx in identical conditions-without modification of experimental conditions or setups between the two proteins. The structural information presented here, coupled with the robust fluorescence polarization assay, should enable development of a simple pharmacophore model of cross-selective Mdm2-Mdmx/p53 inhibitors.
Insights
Researchers developed a mutant p53 peptide that strongly binds Mdm2 and Mdmx proteins, crucial for cancer therapy. This peptide enables a new assay for developing anticancer drugs targeting these interactions.
Area of Science:
- Structural biology
- Biochemistry
- Cancer therapeutics
Background:
- Mdm2 and Mdmx proteins regulate the p53 tumor suppressor.
- Disrupting Mdm2/Mdmx-p53 interactions is a therapeutic strategy for cancer.
Purpose of the Study:
- Present crystal structures of Mdm2-mutant p53 peptide and Mdmx-mutant p53 peptide complexes.
- Develop a robust fluorescence polarization assay for Mdm2/Mdmx-p53 interactions.
Main Methods:
- X-ray crystallography to determine complex structures.
- Fluorescence polarization assays to measure binding affinities.
Main Results:
- A p53 mutant peptide (LTFEHYWAQLTS) adopts similar conformations in Mdm2 and Mdmx complexes.
- The mutant peptide exhibits enhanced helical structure and improved binding affinity (nM range) compared to wild-type p53.
- A novel, cost-effective fluorescence polarization assay was developed.
Conclusions:
- Structural insights and a new assay facilitate the development of Mdm2/Mdmx-p53 inhibitors.
- This work supports the development of novel anticancer therapeutics targeting p53 pathway.
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