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Updated: Feb 12, 2026

Performing Data Mining And Integrative Analysis Of Biomarker in Breast Cancer Using Multiple Publicly Accessible Databases
Published on: May 17, 2019
Mutant p53 in breast cancer: potential as a therapeutic target and biomarker
Michael J Duffy1,2, Naoise C Synnott3, John Crown4
1UCD Clinical Research Centre, St. Vincent's University Hospital, Dublin 4, Ireland. michael.j.duffy@ucd.ie.
Objective:
The aim of this article is to discuss mutant p53 as a possible therapeutic target and biomarker for breast cancer.
Results:
TP53 (p53) is the most frequently mutated gene in invasive breast cancer. Although mutated in 30-35% of all cases, p53 is mutated in approximately 80% of triple-negative (TN) tumors (i.e., tumors negative for ER, PR, and HER2). Because of this high prevalence, mutated p53 is both a potential biomarker and therapeutic target for patients with breast cancer, especially for those with the TN subtype. Although several retrospective studies have investigated a potential prognostic and therapy predictive role for mutant p53 in breast cancer, the results to date are mixed. Thus, at present, mutant p53 cannot be recommended as a prognostic or therapy predictive biomarker in breast cancer. In contrast to the multiple reports on a potential biomarker role, few studies had until recently, investigated mutant p53 as a potential target for breast cancer treatment. In the last decade, however, several compounds have become available which can reactivate mutant p53 protein and convert it to a conformation with wild-type properties. Some of these compounds, especially PRIMA-1, APR-246 PK11007, and COTI-2, have been found to exhibit anticancer activity in preclinical models of breast cancer.
Conclusion:
Since p53 is mutated in the vast majority of TN breast cancers, compounds such as APR-246, PK11007, and COTI-2 are potential treatments for patients with this subform of the disease. Further research is necessary to identify a potential biomarker role for mutant p53 in breast cancer.
Insights
Mutant p53 is a promising therapeutic target for triple-negative breast cancer. While not yet a reliable biomarker, compounds targeting mutant p53 show anticancer activity in preclinical models.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- TP53 (p53) gene mutations are prevalent in invasive breast cancer, particularly in triple-negative (TN) subtypes (approx. 80%).
- Mutant p53 presents a potential therapeutic target and biomarker, especially for TN breast cancer patients.
Purpose of the Study:
- To discuss mutant p53 as a potential therapeutic target and biomarker for breast cancer.
- To review compounds that reactivate mutant p53 with wild-type properties.
Main Methods:
- Review of existing literature on mutant p53 in breast cancer.
- Analysis of preclinical data for compounds targeting mutant p53.
Main Results:
- Mutant p53 is highly prevalent in TN breast cancer, suggesting therapeutic potential.
- Current evidence is mixed regarding mutant p53's prognostic or predictive biomarker role.
- Several compounds (e.g., APR-246, PK11007, COTI-2) demonstrate anticancer activity against breast cancer models by reactivating mutant p53.
Conclusions:
- Compounds like APR-246, PK11007, and COTI-2 show promise for treating TN breast cancer due to high p53 mutation rates.
- Further research is needed to establish a definitive biomarker role for mutant p53 in breast cancer.
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