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Updated: Apr 27, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
DNA methylation alterations of AXIN2 in serrated adenomas and colon carcinomas with microsatellite instability
Yuta Muto, Takafumi Maeda, Koichi Suzuki1
1Department of Surgery, Saitama Medical Center, Jichi Medical University, 1-847, Amanuma-cho, Omiya-ku, Saitama 330-8503, Japan. ksuzbnhm@yahoo.co.jp.
Background:
Recent work led to recognize sessile serrated adenomas (SSA) as precursor to many of the sporadic colorectal cancers with microsatellite instability (MSI). However, comprehensive analyses of DNA methylation in SSA and MSI cancer have not been conducted.
Methods:
With an array-based methylation sensitive amplified fragment length polymorphism (MS-AFLP) method we analyzed 8 tubular (TA) and 19 serrated (SSA) adenomas, and 14 carcinomas with (MSI) and 12 without (MSS) microsatellite instability. MS-AFLP array can survey relative differences in methylation between normal and tumor tissues of 9,654 DNA fragments containing all NotI sequences in the human genome.
Results:
Unsupervised clustering analysis of the genome-wide hypermethylation alterations revealed no major differences between or within these groups of benign and malignant tumors regardless of their location in intergenic, intragenic, promoter, or 3' end regions. Hypomethylation was less frequent in SSAs compared with MSI or MSS carcinomas. Analysis of variance of DNA methylation between these four subgroups identified 56 probes differentially altered. The hierarchical tree of this subset of probes revealed two distinct clusters: Group 1, mostly composed by TAs and MSS cancers with KRAS mutations; and Group 2 with BRAF mutations, which consisted of cancers with MSI and MLH1 methylation (Group 2A), and SSAs without MLH1 methylation (Group 2B). AXIN2, which cooperates with APC and β-catenin in Wnt signaling, had more methylation alterations in Group 2, and its expression levels negatively correlated with methylation determined by bisulfite sequencing. Within group 2B, low and high AXIN2 expression levels correlated significantly with differences in size (P = 0.01) location (P = 0.05) and crypt architecture (P = 0.01).
Conclusions:
Somatic methylation alterations of AXIN2, associated with changes in its expression, stratify SSAs according to some clinico-pathological differences. We conclude that hypermethylation of MLH1, when occurs in an adenoma cell with BRAF oncogenic mutational activation, drives the pathway for MSI cancer by providing the cells with a mutator phenotype. AXIN2 inactivation may contribute to this tumorigenic pathway either by mutator phenotype driven frameshift mutations or by epigenetic deregulation contemporary with the unfolding of the mutator phenotype.
Insights
Sessile serrated adenomas (SSA) are precursors to microsatellite instability (MSI) colorectal cancers. DNA methylation analysis reveals AXIN2 alterations stratify SSAs, linking MLH1 hypermethylation to MSI cancer development.
Area of Science:
- Oncology
- Genetics
- Epigenetics
Background:
- Sessile serrated adenomas (SSA) are recognized precursors to sporadic colorectal cancers exhibiting microsatellite instability (MSI).
- Comprehensive DNA methylation analyses in SSAs and MSI cancers were previously lacking.
Purpose of the Study:
- To investigate genome-wide DNA methylation patterns in various colorectal adenomas and carcinomas.
- To identify specific methylation alterations associated with colorectal cancer development pathways.
Main Methods:
- Utilized array-based methylation sensitive amplified fragment length polymorphism (MS-AFLP) to analyze DNA methylation across 9,654 genomic fragments.
- Examined methylation in tubular adenomas (TA), sessile serrated adenomas (SSA), microsatellite instability (MSI) carcinomas, and microsatellite stable (MSS) carcinomas.
Main Results:
- Genome-wide hypermethylation showed no major differences across tumor types, but hypomethylation was less frequent in SSAs.
- Hierarchical clustering identified two distinct groups: one with TAs/MSS cancers (KRAS mutations) and another with MSI cancers/SSAs (BRAF mutations).
- AXIN2 methylation alterations correlated with its expression and stratified SSAs based on clinico-pathological features.
Conclusions:
- Somatic AXIN2 methylation alterations and expression changes stratify SSAs, indicating clinico-pathological relevance.
- MLH1 hypermethylation in BRAF-mutated adenoma cells drives MSI cancer by inducing a mutator phenotype.
- AXIN2 inactivation may contribute to tumorigenesis via frameshift mutations or epigenetic deregulation within the mutator phenotype pathway.
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