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Updated: May 29, 2026

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Published on: October 27, 2014
The orphan receptor TR3 suppresses intestinal tumorigenesis in mice by downregulating Wnt signalling
Hang-Zi Chen1, Qing-Feng Liu, Li Li
1State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Xiamen University, Xiamen, Fujian 361005, China.
Aims:
Wnt signalling is involved in cellular homeostasis and development. Dysregulation of the Wnt signalling pathway has been linked to colorectal cancer. The orphan nuclear receptor TR3 plays important roles in proliferation and apoptosis. In this study, we investigated how TR3 suppresses intestinal tumorigenesis by regulating Wnt signalling.
Methods:
Intestinal polyps were quantified in Apc(min/+), Apc(min/+)/TR3(-/-) and Apc(min/+)/villin-TR3 mice. Wnt signalling activity was evaluated by assessing β-galactosidase activity in a BAT-Gal reporter strain. The TR3 agonist cytosporone B was used to evaluate the role of TR3 in intestinal tumorigenesis. Crosstalk between TR3 and β-catenin/TCF4 was analysed by molecular methods in colorectal cancer cells. The phosphorylation of TR3 by glycogen synthase kinase (GSK) 3β and the correlation between GSK3β activity and TR3 phosphorylation were evaluated in clinical samples and colorectal cancer cells.
Results:
TR3 was found to significantly suppress Wnt signalling activity and the proliferation of intestinal epithelial cells. Apc(min/+)/TR3(-/-) mice developed more intestinal polyps than Apc(min/+)/TR3(+/+) mice, whereas either transgenic overexpression of TR3 in the intestine or treatment with cytosporone B in Apc(min/+) mice significantly decreased intestinal tumour number. Mechanistically, TR3 disrupted the association of β-catenin and TCF4 on chromatin and facilitated the recruitment of transcriptional co-repressors to the promoters of Wnt signalling target genes. However, TR3 was phosphorylated by GSK3β in most clinical colorectal cancers, which attenuated the inhibitory activity of TR3 towards Wnt signalling.
Conclusions:
TR3 is a negative regulator of Wnt signalling and thus significantly suppresses intestinal tumorigenesis in Apc(min/+) mice. This inhibitory effect of TR3 may be paradoxically overcome through phosphorylation by GSK3β in clinical colorectal cancers.
Insights
The orphan nuclear receptor TR3 suppresses intestinal tumors by inhibiting Wnt signaling. However, glycogen synthase kinase 3 beta (GSK3β) phosphorylation of TR3 can paradoxically increase Wnt signaling in colorectal cancer.
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Homeostasis
Background:
- Wnt signaling is crucial for cellular homeostasis and development.
- Dysregulation of Wnt signaling is implicated in colorectal cancer.
- The orphan nuclear receptor TR3 influences cell proliferation and apoptosis.
Purpose of the Study:
- Investigate the role of TR3 in suppressing intestinal tumorigenesis.
- Elucidate the mechanism by which TR3 regulates Wnt signaling.
- Examine the interplay between TR3, Wnt signaling, and colorectal cancer progression.
Main Methods:
- Quantification of intestinal polyps in genetically modified mouse models (Apc(min/+), Apc(min/+)/TR3(-/-), Apc(min/+)/villin-TR3).
- Assessment of Wnt signaling activity using a BAT-Gal reporter strain.
- Molecular analysis of TR3 and β-catenin/TCF4 interactions in colorectal cancer cells.
- Evaluation of TR3 phosphorylation by glycogen synthase kinase (GSK) 3β in clinical samples and cell lines.
Main Results:
- TR3 significantly suppressed Wnt signaling and intestinal epithelial cell proliferation.
- TR3 deficiency increased intestinal polyp formation, while TR3 overexpression or agonist treatment reduced tumor number.
- TR3 disrupted β-catenin and TCF4 association, inhibiting Wnt target gene expression.
- GSK3β phosphorylation of TR3 attenuated its inhibitory activity in clinical colorectal cancers.
Conclusions:
- TR3 acts as a negative regulator of Wnt signaling, suppressing intestinal tumorigenesis.
- GSK3β-mediated phosphorylation of TR3 can overcome its tumor-suppressive function in colorectal cancer.
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