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Medicinal Chemistry Strategies to Disrupt the p53-MDM2/MDMX Interaction
Agostinho Lemos1, Mariana Leão2, Joana Soares2
1Laboratory of Organic and Pharmaceutical Chemistry, Department of Chemical Sciences, Faculty of Pharmacy, University of Porto, Rua de Jorge Viterbo Ferreira, 228, 4050-313, Porto, Portugal.
Abstract:
The growth inhibitory activity of p53 tumor suppressor is tightly regulated by interaction with two negative regulatory proteins, murine double minute 2 (MDM2) and X (MDMX), which are overexpressed in about half of all human tumors. The elucidation of crystallographic structures of MDM2/MDMX complexes with p53 has been pivotal for the identification of several classes of inhibitors of the p53-MDM2/MDMX interaction. The present review provides in silico strategies and screening approaches used in drug discovery as well as an overview of the most relevant classes of small-molecule inhibitors of the p53-MDM2/MDMX interaction, their progress in pipeline, and highlights particularities of each class of inhibitors. Most of the progress made with high-throughput screening has led to the development of inhibitors belonging to the cis-imidazoline, piperidinone, and spiro-oxindole series. However, novel potent and selective classes of inhibitors of the p53-MDM2 interaction with promising antitumor activity are emerging. Even with the discovery of the 3D structure of complex p53-MDMX, only two small molecules were reported as selective p53-MDMX antagonists, WK298 and SJ-172550. Dual inhibition of the p53-MDM2/MDMX interaction has shown to be an alternative approach since it results in full activation of the p53-dependent pathway. The knowledge of structural requirements crucial to the development of small-molecule inhibitors of the p53-MDMs interactions has enabled the identification of novel antitumor agents with improved in vivo efficacy.
Insights
Small-molecule inhibitors targeting the p53-MDM2/MDMX interaction show promise for cancer treatment. Research reviews in silico strategies and drug classes, highlighting cis-imidazoline, piperidinone, and spiro-oxindole series for antitumor activity.
Area of Science:
- Oncology
- Drug Discovery
- Structural Biology
Background:
- The p53 tumor suppressor's growth inhibitory activity is regulated by MDM2 and MDMX proteins.
- Overexpression of MDM2 and MDMX is common in human tumors, impacting p53 function.
- Structural insights into p53-MDM2/MDMX complexes guide inhibitor development.
Purpose of the Study:
- To review in silico strategies for discovering inhibitors of the p53-MDM2/MDMX interaction.
- To provide an overview of small-molecule inhibitor classes targeting p53-MDM2/MDMX.
- To highlight progress, challenges, and future directions in developing these inhibitors.
Main Methods:
- In silico drug discovery strategies.
- High-throughput screening (HTS) approaches.
- Analysis of crystallographic structures of p53-MDM2/MDMX complexes.
Main Results:
- Several classes of small-molecule inhibitors have been identified, including cis-imidazoline, piperidinone, and spiro-oxindole series.
- Novel potent and selective inhibitors of p53-MDM2 interaction show promising antitumor activity.
- Dual inhibition of p53-MDM2/MDMX interaction offers a strategy for full p53 pathway activation.
Conclusions:
- Structural knowledge is crucial for designing effective small-molecule inhibitors of p53-MDM interactions.
- Targeting p53-MDM interactions represents a viable strategy for developing novel antitumor agents.
- Further research into selective p53-MDMX antagonists and dual inhibitors is warranted.
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