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Updated: May 22, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
Integrated epigenomics identifies BMP4 as a modulator of cisplatin sensitivity in gastric cancer
Tatiana Ivanova1, Hermioni Zouridis, Yonghui Wu
1Duke-NUS Graduate Medical School, 11 Hospital Drive, Singapore 169610, Singapore. gmstanp@duke-nus.edu.sg
Objective:
Cisplatin is a widely used gastric cancer (GC) chemotherapy; however, genetic factors regulating GC responses to cisplatin remain obscure. Identifying genes regulating cisplatin resistance could aid clinicians in tailoring treatments, by distinguishing cisplatin sensitive patients from those who might benefit from alternative platinum therapies, and highlight novel targeted strategies for overcoming cisplatin resistance. Here integrated epigenomics is applied to identify genes associated with GC cisplatin resistance.
Design:
20 GC cell lines were subjected to gene expression profiling, DNA methylation profiling and drug response assays. The molecular data were integrated to identify genes highly expressed and unmethylated specifically in cisplatin-resistant lines. Candidate genes were functionally tested by several in vitro and in vivo assays. Clinical impact of candidate genes was also assessed in a cohort of 197 GC patients.
Results:
Epigenomic analysis identified bone morphogenetic protein 4 (BMP4) as an epigenetically regulated gene highly expressed in cisplatin-resistant lines. Functional assays confirmed that BMP4 is necessary and sufficient for the expression of several prooncogenic traits, likely mediated through stimulation of the epithelial-mesenchymal transition. In primary tumours, BMP4 promoter methylation levels were inversely correlated with BMP4 expression, and patients with high BMP4-expressing tumours exhibited significantly worse prognosis. Therapeutically, targeted genetic inhibition of BMP4 caused significant sensitisation of GC cells to cisplatin. Notably, BMP4-expressing GCs also did not exhibit cross resistance to oxaliplatin.
Conclusions:
BMP4 epigenetic and expression status may represent promising biomarkers for GC cisplatin resistance. Targeting BMP4 may sensitise GC cells to cisplatin. Oxaliplatin, a clinically acceptable cisplatin alternative, may represent a potential therapeutic option for BMP4-positive GCs.
Insights
Bone morphogenetic protein 4 (BMP4) is highly expressed in cisplatin-resistant gastric cancer (GC). Targeting BMP4 sensitizes GC to cisplatin and may guide alternative therapies like oxaliplatin for resistant tumors.
Area of Science:
- Oncology
- Genetics
- Epigenetics
Background:
- Cisplatin is a cornerstone chemotherapy for gastric cancer (GC).
- Genetic and epigenetic factors influencing GC response to cisplatin are not fully understood.
- Identifying resistance mechanisms can personalize treatment and reveal new therapeutic targets.
Purpose of the Study:
- To identify genes associated with GC cisplatin resistance using integrated epigenomics.
- To investigate the role of identified genes in GC progression and drug response.
- To assess the clinical relevance of candidate genes in GC patients.
Main Methods:
- Gene expression and DNA methylation profiling of 20 GC cell lines.
- Drug response assays to correlate molecular profiles with cisplatin sensitivity.
- Functional validation of candidate genes using in vitro and in vivo models.
- Clinical correlation analysis in a cohort of 197 GC patients.
Main Results:
- Bone morphogenetic protein 4 (BMP4) was identified as epigenetically regulated and highly expressed in cisplatin-resistant GC cells.
- BMP4 expression promotes pro-oncogenic traits, potentially via epithelial-mesenchymal transition.
- Inverse correlation between BMP4 promoter methylation and expression in primary tumors.
- High BMP4 expression in tumors correlated with poorer patient prognosis.
- Targeting BMP4 sensitized GC cells to cisplatin and showed no cross-resistance to oxaliplatin.
Conclusions:
- BMP4 expression and epigenetic status are potential biomarkers for GC cisplatin resistance.
- Targeting BMP4 could enhance cisplatin efficacy in GC.
- BMP4-positive GCs may benefit from alternative platinum-based therapies like oxaliplatin.
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