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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Chalcone derivatives antagonize interactions between the human oncoprotein MDM2 and p53
Abstract:
The oncoprotein MDM2 inhibits the tumor suppressor protein p53 by binding to the p53 transactivation domain. The p53 gene is inactivated in many human tumors either by mutations or by binding to oncogenic proteins. In some tumors, such as soft tissue sarcomas, overexpression of MDM2 inactivates an otherwise intact p53, disabling the genome integrity checkpoint and allowing cell cycle progression of defective cells. Disruption of the MDM2/p53 interaction leads to increased p53 levels and restored p53 transcriptional activity, indicating restoration of the genome integrity check and therapeutic potential for MDM2/p53 binding antagonists. Here, we show by multidimensional NMR spectroscopy that chalcones (1,3-diphenyl-2-propen-1-ones) are MDM2 inhibitors that bind to a subsite of the p53 binding cleft of human MDM2. Biochemical experiments showed that these compounds can disrupt the MDM2/p53 protein complex, releasing p53 from both the p53/MDM2 and DNA-bound p53/MDM2 complexes. These results thus offer a starting basis for structure-based drug design of cancer therapeutics.
Insights
Chalcones inhibit the MDM2 oncoprotein, which normally suppresses the p53 tumor suppressor. This disruption releases p53, restoring its activity and offering potential cancer therapeutic strategies.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- The MDM2 oncoprotein inhibits the p53 tumor suppressor protein by binding to its transactivation domain.
- Inactivation of the p53 gene, through mutation or oncogenic protein binding, is common in human tumors.
- MDM2 overexpression can inactivate p53 in tumors like soft tissue sarcomas, compromising genome integrity and promoting cell cycle progression.
Purpose of the Study:
- To identify novel inhibitors of the MDM2/p53 interaction.
- To explore the therapeutic potential of disrupting this interaction for cancer treatment.
Main Methods:
- Multidimensional NMR spectroscopy to characterize chalcone binding to human MDM2.
- Biochemical assays to assess the disruption of p53/MDM2 complexes.
Main Results:
- Chalcones were identified as inhibitors that bind to a specific subsite within the p53 binding cleft of MDM2.
- These chalcones effectively disrupted both free and DNA-bound p53/MDM2 protein complexes.
- The disruption led to the release of p53, restoring its transcriptional activity.
Conclusions:
- Chalcones represent a promising starting point for structure-based drug design targeting the MDM2/p53 interaction.
- Disrupting the MDM2/p53 binding offers a viable therapeutic strategy for cancers where p53 is inactivated by MDM2 overexpression.
- Restoration of p53 activity through MDM2 inhibition can re-establish the genome integrity checkpoint.
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