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Updated: Jun 7, 2025

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Activating p53Y220C with a Mutant-Specific Small Molecule
Xijun Zhu1,2, Woong Sub Byun3,2, Dominika Ewa Pieńkowska4
1Department of Chemistry, Stanford University, Stanford, CA, USA.
Researchers developed TRanscriptional Activator of p53 (TRAP-1), a novel compound that reactivates the mutated tumor suppressor protein p53. TRAP-1 activates mutant p53, restoring its tumor-suppressing functions and inhibiting cancer cell growth.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- The TP53 gene is the most frequently mutated gene in human cancers.
- Mutant p53 proteins often lose their tumor suppressor functions and are difficult to therapeutically target.
- Restoring p53 function is a key goal in cancer therapy.
Purpose of the Study:
- To discover and characterize a small molecule that can reactivate mutant p53.
- To investigate the mechanism of action for this novel compound.
- To evaluate the therapeutic potential of reactivating mutant p53 in cancer models.
Main Methods:
- Discovery of a small molecule chemical inducer of proximity, named TRanscriptional Activator of p53 (TRAP-1).
- Characterization of TRAP-1's ability to form a ternary complex with mutant p53 and BRD4.
- Treatment of p53Y220C-expressing pancreatic cancer cell lines with TRAP-1.
- Analysis of p53 target gene transcription (e.g., p21) and cell growth inhibition.
- Use of control compounds lacking ternary complex formation capability.
Main Results:
- TRAP-1 successfully engages mutant p53 and BRD4, forming a ternary complex.
- This complex formation potently activates mutant p53 and induces robust transcription of p53 target genes.
- TRAP-1 treatment led to rapid upregulation of p21 and other target genes in p53Y220C-expressing cells.
- TRAP-1 inhibited the growth of these specific cancer cell lines.
- Control compounds without ternary complex formation ability did not yield similar results.
Conclusions:
- Chemically induced proximity is a viable strategy for reactivating mutant tumor suppressor proteins like p53.
- TRAP-1 demonstrates the potential of this approach to restore lost tumor suppressor functions in cancer.
- This discovery opens new avenues for developing therapies against cancers with TP53 mutations.
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