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Updated: Jul 10, 2025

In vitro Organoid Culture of Primary Mouse Colon Tumors
Published on: May 17, 2013
Mutant p53 gain-of-function stimulates canonical Wnt signaling via PI3K/AKT pathway in colon cancer
Eduardo Alvarado-Ortiz1,2, Elizabeth Ortiz-Sánchez3, Miguel Angel Sarabia-Sánchez2
1Programa de Posgrado en Ciencias Biológicas, Universidad Nacional Autónoma de México, Mexico City, Mexico.
Abstract:
Aberrant canonical Wnt signaling is a hallmark of colon cancer. The TP53 tumor suppressor gene is altered in many solid tumors, including colorectal cancer, resulting in mutant versions of p53 (mut-p53) that lose their tumor suppressor capacities and acquire new-oncogenic functions (GOFs) critical for disease progression. Although the mechanisms related to mut-p53 GOF have been explored extensively, the relevance of mut-p53 in the canonical Wnt pathway is not well defined. This work investigated the influence of mut-p53 compared to wt-p53 in β-catenin-dependent Wnt signaling. Using the TCGA public data from Pan-Cancer and the GEPIA2 platform, an in silico analysis of wt-p53 versus mut-p53 genotyped colorectal cancer patients showed that TP53 (p53) and CTNNB1 (β-catenin) are significantly overexpressed in colorectal cancer, compared with normal tissue. Using p53 overexpression or p53 knockdown assays of wt-p53 or mut-p53, we found that while wt-p53 antagonizes canonical Wnt signaling, mut-p53 induces the opposite effect, improving the β-catenin-dependent transcriptional activity and colony formation ability of colon cancer cells, which were both decreased by mut-p53 knockdown expression. The mechanism involved in mut-p53-induced activation of canonical Wnt appears to be via AKT-mediated phosphorylation of Ser 552 of β-catenin, which is known to stabilize and enhance its transcriptional activity. We also found that while wt-p53 expression contributes to 5-FU sensitivity in colon cancer cells, the RITA p53 reactivating molecule counteracted the resistance against 5-FU in cells expressing mut-p53. Our results indicate that mut-p53 GOF acts as a positive regulator of canonical Wnt signaling and participates in the induction of resistance to 5-FU in colon cancer cells.
Insights
Mutant p53 (mut-p53) activates Wnt signaling and promotes colon cancer progression and 5-FU resistance. Wild-type p53 (wt-p53) antagonizes Wnt signaling, while mut-p53 enhances it via AKT, impacting colon cancer cell growth and drug sensitivity.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Aberrant Wnt signaling and TP53 mutations are common in colon cancer.
- Mutant p53 (mut-p53) gains oncogenic functions (GOFs), but its role in Wnt signaling is unclear.
- Wild-type p53 (wt-p53) typically acts as a tumor suppressor.
Purpose of the Study:
- To investigate the role of mut-p53 versus wt-p53 in canonical Wnt signaling in colorectal cancer.
- To elucidate the mechanisms by which mut-p53 influences Wnt pathway activity and colon cancer progression.
- To assess the impact of mut-p53 on chemoresistance, specifically to 5-FU.
Main Methods:
- In silico analysis of TCGA and GEPIA2 data for TP53 and CTNNB1 expression in colorectal cancer.
- In vitro experiments involving p53 overexpression and knockdown assays (wt-p53 and mut-p53).
- Assessment of β-catenin transcriptional activity, colony formation, and sensitivity to 5-FU.
Main Results:
- TP53 and CTNNB1 are overexpressed in colorectal cancer compared to normal tissue.
- Wt-p53 antagonizes Wnt signaling, whereas mut-p53 enhances β-catenin activity and colon cancer cell proliferation.
- Mut-p53 enhances Wnt signaling via AKT-mediated phosphorylation of β-catenin (Ser 552), promoting 5-FU resistance.
Conclusions:
- Mutant p53 acts as a positive regulator of canonical Wnt signaling in colon cancer.
- Mut-p53 GOF contributes to colon cancer cell growth and chemoresistance to 5-FU.
- Targeting mut-p53 or reactivating wt-p53 may offer therapeutic strategies for colon cancer.
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