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Updated: Jan 24, 2026

High-throughput Screening for Broad-spectrum Chemical Inhibitors of RNA Viruses
Published on: May 5, 2014
The facile and visualizable identification of broad-spectrum inhibitors of MDM2/p53 using co-expressed protein
Yang Yang1, Zhiqiang Dong1, Hongze Hu1
1CAS Key Laboratory of Soft Matter Chemistry, Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, China. liuyz@ustc.edu.cn.
Abstract:
MDM2 is a well-known oncoprotein overexpressed in a variety of cancers, and the identification of inhibitors that disrupt the MDM2/p53 interaction is of great interest in anticancer drug development. Here we designed a platform for the facile and visualizable identification of inhibitors of MDM2 using co-expressed protein complexes of MDM2/p53. A hexahistidine-tag on MDM2 allows the binding of the protein complex to the Ni-NTA affinity resin, while the fluorescent protein fused to p53 enables the direct visualization of the interaction of p53 with MDM2. Hence, the inhibition of the MDM2/p53 interaction can be observed with the naked eye. The assay can be set up by directly loading cell lysate to the Ni-NTA affinity resin, and no chemical modification of proteins is needed. In addition to the qualitative analyses, the binding affinity of inhibitors to the MDM2 protein can be quantified by fluorescence titration. The applications of this system have been verified using small molecules and peptide inhibitors. As a proof of concept, we screened a small library using this platform. Interestingly, two types of novel inhibitors of MDM2, including cyclohexyl-triphenylamine derivatives and platinum complexes, were identified and their binding affinities were obtained. Quantitative measurements show that these new types of inhibitors demonstrate a high binding affinity (up to Kd = 51.9 nM) to MDM2.
Insights
Researchers developed a visual assay to identify MDM2 inhibitors for cancer therapy. This platform enables naked-eye detection of compounds disrupting the MDM2/p53 interaction, aiding anticancer drug discovery.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- MDM2 is an oncoprotein frequently overexpressed in various cancers.
- Inhibiting the MDM2/p53 interaction is a key strategy in anticancer drug development.
Purpose of the Study:
- To design a facile and visualizable platform for identifying MDM2 inhibitors.
- To enable direct observation of MDM2/p53 interaction inhibition.
Main Methods:
- Co-expression of MDM2 with a hexahistidine-tag and p53 fused to a fluorescent protein.
- Utilizing Ni-NTA affinity resin for binding the protein complex.
- Visual detection of interaction inhibition and fluorescence titration for binding affinity quantification.
Main Results:
- A novel assay allows naked-eye identification of MDM2/p53 interaction inhibitors.
- The platform successfully identified novel inhibitors, including cyclohexyl-triphenylamine derivatives and platinum complexes.
- Quantitative analysis revealed high binding affinities for these novel inhibitors (up to Kd = 51.9 nM).
Conclusions:
- The developed platform offers a simple and visual method for screening MDM2 inhibitors.
- This system facilitates the discovery of novel anticancer agents targeting the MDM2/p53 pathway.
- The identified inhibitors show promising high binding affinity for potential therapeutic applications.
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