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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
SAR405838: an optimized inhibitor of MDM2-p53 interaction that induces complete and durable tumor regression
Shaomeng Wang1, Wei Sun2, Yujun Zhao2
1University of Michigan Comprehensive Cancer Center, University of Michigan, Ann Arbor, Michigan. Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan. Department of Pharmacology, University of Michigan, Ann Arbor, Michigan. Department of Medicinal Chemistry, University of Michigan, Ann Arbor, Michigan. shaomeng@umich.edu.
Abstract:
Blocking the oncoprotein murine double minute 2 (MDM2)-p53 protein-protein interaction has long been considered to offer a broad cancer therapeutic strategy, despite the potential risks of selecting tumors harboring p53 mutations that escape MDM2 control. In this study, we report a novel small-molecule inhibitor of the MDM2-p53 interaction, SAR405838 (MI-77301), that has been advanced into phase I clinical trials. SAR405838 binds to MDM2 with K(i) = 0.88 nmol/L and has high specificity over other proteins. A cocrystal structure of the SAR405838:MDM2 complex shows that, in addition to mimicking three key p53 amino acid residues, the inhibitor captures additional interactions not observed in the p53-MDM2 complex and induces refolding of the short, unstructured MDM2 N-terminal region to achieve its high affinity. SAR405838 effectively activates wild-type p53 in vitro and in xenograft tumor tissue of leukemia and solid tumors, leading to p53-dependent cell-cycle arrest and/or apoptosis. At well-tolerated dose schedules, SAR405838 achieves either durable tumor regression or complete tumor growth inhibition in mouse xenograft models of SJSA-1 osteosarcoma, RS4;11 acute leukemia, LNCaP prostate cancer, and HCT-116 colon cancer. Remarkably, a single oral dose of SAR405838 is sufficient to achieve complete tumor regression in the SJSA-1 model. Mechanistically, robust transcriptional upregulation of PUMA induced by SAR405838 results in strong apoptosis in tumor tissue, leading to complete tumor regression. Our findings provide a preclinical basis upon which to evaluate SAR405838 as a therapeutic agent in patients whose tumors retain wild-type p53.
Insights
A new drug, SAR405838, effectively blocks the MDM2-p53 interaction, activating wild-type p53 to treat various cancers. This novel inhibitor shows significant tumor regression in preclinical models, offering a promising cancer therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- The murine double minute 2 (MDM2)-p53 protein-protein interaction is a key target for cancer therapy.
- Inhibiting this interaction may offer a broad therapeutic strategy, but carries risks for tumors with p53 mutations.
Purpose of the Study:
- To report a novel small-molecule inhibitor, SAR405838, targeting the MDM2-p53 interaction.
- To evaluate the preclinical efficacy and mechanism of action of SAR405838 in various cancer models.
Main Methods:
- Developed SAR405838, a specific small-molecule inhibitor of MDM2-p53 interaction.
- Determined the cocrystal structure of SAR405838:MDM2 complex.
- Assessed p53 activation, cell-cycle arrest, apoptosis, and tumor growth inhibition in vitro and in vivo xenograft models.
Main Results:
- SAR405838 binds MDM2 with high affinity (K(i) = 0.88 nmol/L) and specificity.
- The inhibitor mimics p53 residues and induces MDM2 refolding for high affinity.
- SAR405838 activated wild-type p53, induced apoptosis, and achieved significant tumor regression in multiple cancer xenografts, including osteosarcoma, leukemia, prostate, and colon cancer models.
- A single oral dose led to complete regression in osteosarcoma models.
Conclusions:
- SAR405838 is a potent MDM2-p53 inhibitor with strong preclinical anti-cancer activity.
- The drug's mechanism involves PUMA upregulation, leading to apoptosis and tumor regression.
- SAR405838 warrants clinical evaluation as a therapeutic agent for tumors with wild-type p53.
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