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.

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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