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Updated: Feb 10, 2026

Detection of Aggregation-Prone Behavior in Mutant P53 V157F Breast Cancer Cells Using Multipoint Thioflavin T Fluorescence
Published on: December 30, 2025
Enhanced breast cancer progression by mutant p53 is inhibited by the circular RNA circ-Ccnb1
Ling Fang1,2, William W Du1, Juanjuan Lyu1
1Sunnybrook Research Institute, and Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Canada.
Abstract:
TP53 mutations occur in many different types of cancers that produce mutant p53 proteins. The mutant p53 proteins have lost wild-type p53 activity and gained new functions that contribute to malignant tumor progression. Different p53 mutations create distinct profiles in loss of wild-type p53 activity and gain of functions. Targeting the consequences generated by the great number of p53 mutations would be extremely complex. Therefore, in this study we used a workaround and took advantage of the fact that mutant p53 cannot bind H2AX. Using this, we developed a new approach to repress the acquisition of mutant p53 functions. We show here that the delivery of a circular RNA circ-Ccnb1 inhibited the function of three p53 mutations. By microarray analysis and real-time PCR, we detected decreased circ-Ccnb1 expression levels in patients bearing breast carcinoma. Ectopic delivery of circ-Ccnb1 inhibited tumor growth and extended mouse viability. Using proteomics, we found that circ-Ccnb1 precipitated p53 in p53 wild-type cells, but instead precipitated Bclaf1 in p53 mutant cells. Further experiments showed that H2AX serves as a bridge, linking the interaction of circ-Ccnb1 and wild-type p53, thus allowing Bclaf1 to bind Bcl2 resulting in cell survival. In the p53 mutant cells, circ-Ccnb1 formed a complex with H2AX and Bclaf1, resulting in the induction of cell death. We found that this occurred in three p53 mutations. These results shed light on the possible development of new approaches to inhibit the malignancy of p53 mutations.
Insights
A novel circular RNA, circ-Ccnb1, effectively targets mutant p53 functions in cancer. This approach inhibits tumor growth and promotes cell death in p53 mutant cells, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- TP53 mutations are common in various cancers, leading to altered p53 protein functions that drive tumor progression.
- Targeting the diverse consequences of numerous p53 mutations presents a significant therapeutic challenge.
Purpose of the Study:
- To develop a novel strategy to inhibit the oncogenic functions acquired by mutant p53 proteins.
- To investigate the therapeutic potential of circ-Ccnb1 in repressing p53 mutation-driven malignancy.
Main Methods:
- Utilized a circ-Ccnb1 delivery system to target mutant p53.
- Employed microarray analysis and real-time PCR to assess circ-Ccnb1 expression in breast cancer patients.
- Investigated protein interactions using proteomics and further biochemical assays.
Main Results:
- Decreased circ-Ccnb1 expression was observed in breast carcinoma patients.
- Ectopic circ-Ccnb1 delivery inhibited tumor growth and improved survival in mouse models.
- circ-Ccnb1 interacted with H2AX to modulate p53 and Bclaf1 interactions, inducing cell death in p53 mutant cells.
Conclusions:
- circ-Ccnb1 represents a promising therapeutic agent against cancers with p53 mutations.
- The study elucidates a novel mechanism involving circ-Ccnb1, H2AX, and Bclaf1 in regulating cell fate.
- This research opens new avenues for developing targeted therapies for p53-mutated malignancies.
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