Related Experiment Video
Updated: Apr 20, 2026

Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
p53 as a target for the treatment of cancer
Abstract:
TP53 (p53) is the most frequently mutated gene in cancer, being altered in approximately 50% of human malignancies. In most, if not all, cancers lacking mutation, wild-type (WT) p53 is inactivated by interaction with cellular (MDM2/MDM4) or viral proteins, leading to its degradation. Because of its near universal alteration in cancer, p53 is an attractive target for the development of new targeted therapies for this disease. However, until recently, p53 was widely regarded as ‘‘undruggable’’. This situation has now changed, as several compounds have become available that can restore wild-type properties to mutant p53 (e.g., PRIMA-1 and PRIMA-1MET). Other compounds are available that prevent the binding of MDM2/MDM4 to WT p53, thereby blocking its degradation (e.g., nutlins). Anti-mutant p53 compounds are potentially most useful in cancers with a high prevalence of p53 mutations. These include difficult-totreat tumors such as high grade serous ovarian cancer, triple-negative breast cancer and squamous lung cancer. MDM2/4 antagonists, on the other hand, are likely to be efficacious in malignancies in which MDM2 or MDM4 is overexpressed such as sarcomas, neuroblastomas and specific childhood leukemias. Presently, early clinical trials are ongoing evaluating the anti-mutant p53 agent, PRIMA-1MET, and specific MDM2–p53 nutlin antagonists.
Insights
The TP53 (p53) gene is frequently altered in cancer. New therapies targeting mutant p53 or inhibiting its degradation are emerging as promising cancer treatments.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- TP53 (p53) mutations occur in ~50% of human cancers.
- Wild-type p53 is inactivated via degradation mediated by MDM2/MDM4 or viral proteins in other cancers.
- p53's near-universal alteration makes it a key target for novel cancer therapies.
Purpose of the Study:
- To review the therapeutic potential of targeting p53 in cancer.
- To discuss compounds that restore wild-type p53 properties or inhibit p53 degradation.
- To highlight specific cancer types where these therapies may be most effective.
Main Methods:
- Review of existing literature on p53 function and targeted therapies.
- Identification and categorization of anti-p53 compounds.
- Analysis of p53 mutation prevalence and MDM2/MDM4 overexpression in various malignancies.
Main Results:
- Compounds like PRIMA-1/PRIMA-1MET can restore wild-type p53 function in mutant forms.
- MDM2/MDM4 antagonists (e.g., nutlins) prevent wild-type p53 degradation.
- Clinical trials are underway for PRIMA-1MET and MDM2-p53 inhibitors.
Conclusions:
- Targeting p53, once considered 'undruggable,' offers new therapeutic avenues for cancer.
- Anti-mutant p53 agents are promising for cancers with high p53 mutation rates (e.g., ovarian, breast, lung).
- MDM2/MDM4 antagonists show potential in cancers with MDM2/MDM4 overexpression (e.g., sarcomas, neuroblastomas).
Related Concept Videos
Abnormal Proliferation
Targeted Cancer Therapies
There are several types of targeted therapies against...
Targeted Cancer Therapies
DNA Damage can Stall the Cell Cycle
DNA Damage Can Stall the Cell Cycle
Negative Regulator Molecules

