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Updated: Nov 3, 2025

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
Highly recurrent CBS epimutations in gastric cancer CpG island methylator phenotypes and inflammation
Nisha Padmanabhan1, Huang Kie Kyon1, Arnoud Boot2
1Programme in Cancer and Stem Cell Biology, Duke-NUS Medical School, 8, College road, Singapore, 169857, Singapore.
Background:
CIMP (CpG island methylator phenotype) is an epigenetic molecular subtype, observed in multiple malignancies and associated with the epigenetic silencing of tumor suppressors. Currently, for most cancers including gastric cancer (GC), mechanisms underlying CIMP remain poorly understood. We sought to discover molecular contributors to CIMP in GC, by performing global DNA methylation, gene expression, and proteomics profiling across 14 gastric cell lines, followed by similar integrative analysis in 50 GC cell lines and 467 primary GCs.
Results:
We identify the cystathionine beta-synthase enzyme (CBS) as a highly recurrent target of epigenetic silencing in CIMP GC. Likewise, we show that CBS epimutations are significantly associated with CIMP in various other cancers, occurring even in premalignant gastroesophageal conditions and longitudinally linked to clinical persistence. Of note, CRISPR deletion of CBS in normal gastric epithelial cells induces widespread DNA methylation changes that overlap with primary GC CIMP patterns. Reflecting its metabolic role as a gatekeeper interlinking the methionine and homocysteine cycles, CBS loss in vitro also causes reductions in the anti-inflammatory gasotransmitter hydrogen sulfide (H2S), with concomitant increase in NF-κB activity. In a murine genetic model of CBS deficiency, preliminary data indicate upregulated immune-mediated transcriptional signatures in the stomach.
Conclusions:
Our results implicate CBS as a bi-faceted modifier of aberrant DNA methylation and inflammation in GC and highlights H2S donors as a potential new therapy for CBS-silenced lesions.
Insights
CpG island methylator phenotype (CIMP) in gastric cancer is poorly understood. Researchers identified cystathionine beta-synthase (CBS) as a key silenced gene in CIMP, linking it to inflammation and suggesting H2S donors as a potential therapy.
Area of Science:
- Epigenetics
- Molecular Oncology
- Cancer Biology
Background:
- CpG island methylator phenotype (CIMP) is an epigenetic subtype in cancers, linked to tumor suppressor gene silencing.
- Mechanisms driving CIMP in gastric cancer (GC) are largely unknown.
- CIMP is observed across multiple malignancies.
Purpose of the Study:
- To identify molecular contributors to CIMP in gastric cancer.
- To investigate the role of epigenetic silencing in CIMP development.
- To explore potential therapeutic targets for CIMP-positive GC.
Main Methods:
- Global DNA methylation, gene expression, and proteomics profiling.
- Integrative analysis in GC cell lines and primary tumors.
- CRISPR gene editing and murine models for functional studies.
Main Results:
- Cystathionine beta-synthase (CBS) was identified as a frequently epigenetically silenced gene in CIMP GC.
- CBS epimutations are associated with CIMP in other cancers and premalignant conditions.
- CBS loss alters DNA methylation, reduces hydrogen sulfide (H2S), and increases NF-κB activity, potentially driving inflammation.
Conclusions:
- CBS acts as a dual regulator of DNA methylation and inflammation in GC.
- Epigenetic silencing of CBS contributes to CIMP pathogenesis.
- Hydrogen sulfide (H2S) donors represent a potential therapeutic strategy for CBS-silenced GC.
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