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Updated: Nov 6, 2025

Continuous Fluorescence-Based Endonuclease-Coupled DNA Methylation Assay to Screen for DNA Methyltransferase Inhibitors
Published on: August 5, 2022
Moderate DNA hypomethylation suppresses intestinal tumorigenesis by promoting caspase-3 expression and apoptosis
Xiaoya Duan1, Yuanyong Huang1, Xiaoxing Chen1
1Shanghai Key Laboratory of Regulatory Biology, Fengxian District Central Hospital-ECNU Joint Center of Translational Medicine, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University, Shanghai, 200241, China.
Abstract:
Global DNA hypomethylation is a most common epigenetic alteration in human neoplasia. However, accumulative evidence shows that global DNA hypomethylation impacts tumorigenesis in a tissue-specific manner, promoting tumorigenesis in some but suppressing tumorigenesis in others including colorectal cancer. The underlying mechanisms, especially how DNA hypomethylation suppresses tumorigenesis, remain largely unknown. Here, we investigate how DNA hypomethylation affects intestinal tumorigenesis by using an Uhrf1 tandem tudor domain knockin mutant mouse model (Uhrf1ki/ki) that exhibits a moderate ~10% reduction of global DNA methylation. We found that both chemical-induced colorectal carcinogenesis and Apc loss of heterozygosity (LOH)-induced intestinal tumorigenesis are substantially suppressed in the Uhrf1 mutant mice. Furthermore, unlike Dnmt1 hypomorphic mice in which DNA hypomethylation suppresses the incidence of macroscopic intestinal tumors but promotes the formation of microadenoma in ApcMin/+ background, Uhrf1ki/ki/ApcMin/+ mice have markedly reduced incidence of both microadenoma and macroadenoma. DNA hypomethylation does not appear to affect Apc LOH, activation of the Wnt or Hippo pathway, or tumor cell proliferation, but acts cooperatively with activated Wnt pathway to enhance the caspase-3 gene expression, activation, and apoptosis. Furthermore, increased caspase-3 expression correlates with DNA hypomethylation within the caspase-3 enhancer regions. Taken together, we present a new mouse model for investigating the role of and the molecular mechanisms by which DNA hypomethylation suppresses intestinal tumorigenesis. Our finding that a moderate DNA hypomethylation is sufficient to suppress intestinal tumorigenesis by promoting caspase-3 expression and apoptosis sheds new light on DNA-methylation inhibitor-based colorectal cancer therapeutics.
Insights
Global DNA hypomethylation suppresses colorectal cancer by increasing apoptosis. This study reveals a new mechanism where reduced DNA methylation enhances caspase-3 expression, offering insights for cancer therapeutics.
Area of Science:
- Epigenetics
- Cancer Biology
- Molecular Oncology
Background:
- Global DNA hypomethylation is a common epigenetic alteration in cancer.
- Its role in tumorigenesis is tissue-specific, suppressing it in colorectal cancer.
- Mechanisms by which DNA hypomethylation suppresses tumorigenesis are largely unknown.
Purpose of the Study:
- To investigate how DNA hypomethylation affects intestinal tumorigenesis.
- To elucidate the molecular mechanisms underlying DNA hypomethylation-mediated suppression of colorectal cancer.
Main Methods:
- Utilized a Uhrf1 tandem tudor domain knockin mutant mouse model (Uhrf1ki/ki) with reduced global DNA methylation.
- Assessed chemical-induced colorectal carcinogenesis and Apc loss of heterozygosity (LOH)-induced intestinal tumorigenesis.
- Analyzed effects on Apc LOH, Wnt/Hippo pathways, proliferation, caspase-3 expression, and apoptosis.
Main Results:
- Uhrf1 mutant mice showed suppressed colorectal carcinogenesis and intestinal tumorigenesis.
- Unlike other models, Uhrf1ki/ki/ApcMin/+ mice had reduced microadenoma and macroadenoma.
- DNA hypomethylation enhanced caspase-3 expression and apoptosis, correlating with hypomethylation in enhancer regions, without affecting proliferation or key pathway activations.
Conclusions:
- A novel mouse model was developed to study DNA hypomethylation's role in suppressing intestinal tumorigenesis.
- Moderate DNA hypomethylation suppresses intestinal tumors by promoting caspase-3 expression and apoptosis.
- Findings offer new perspectives for DNA-methylation inhibitor-based colorectal cancer therapeutics.
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