Publication | Closed Access
Discovery, Synthesis, and Biological Evaluation of Orally Active Pyrrolidone Derivatives as Novel Inhibitors of p53–MDM2 Protein–Protein Interaction
128
Citations
30
References
2012
Year
PharmacotherapyChemistryChemical BiologyPharmaceutical ChemistryMedicinal ChemistryBiological EvaluationAnti-cancer AgentBiochemistryTumor GrowthPharmacological AgentTumor TargetingP53–mdm2 Protein–protein InteractionDrug DevelopmentNovel InhibitorsPharmacologyP53-mdm2 InteractionPolymer-drug ConjugateNatural SciencesRational Drug DesignDeleted P53MedicineDrug Discovery
The p53-MDM2 interaction has been proved to be a valuable target to develop effective antitumor agents. Novel p53-MDM2 inhibitors bearing pyrrolidone scaffolds were successfully identified by structure-based design. The nanomolar inhibitor 5 possessed good p53-MDM2 inhibitory activity (K(i) = 780 nM) due to its hydrophobic and hydrogen bonding interactions with MDM2. Further hit optimization led to the discovery of a number of highly potent pyrrolidone derivatives with improved p53-MDM2 inhibitory activity and in vitro antiproliferative potency. Compounds 41 (K(i) = 260.0 nM) and 60a (K(i) = 150.0 nM) showed good and selective activity against tumor cells with deleted p53. In addition, these two compounds also effectively inhibited the tumor growth in the A549 xenograft model. Interestingly, compound 41 was proved to be a potent MDM2/MDMX dual inhibitor. The novel pyrrolidone p53-MDM2 inhibitors represent promising lead structures for the development of novel antitumor agents.
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