Related Experiment Video
Updated: Jul 20, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
Differential DNA methylation profiles in gynecological cancers and correlation with clinico-pathological data
Hui-Juan Yang1, Vincent W S Liu, Yue Wang
1Department of Gynecologic Oncology, Fudan University Cancer Hospital, Shanghai, China. huijuanyang@hotmail.com
Background:
Epigenetic gene silencing is one of the major causes of carcinogenesis. Its widespread occurrence in cancer genome could inactivate many cellular pathways including DNA repair, cell cycle control, apoptosis, cell adherence, and detoxification. The abnormal promoter methylation might be a potential molecular marker for cancer management.
Methods:
For rapid identification of potential targets for aberrant methylation in gynecological cancers, methylation status of the CpG islands of 34 genes was determined using pooled DNA approach and methylation-specific PCR. Pooled DNA mixture from each cancer type (50 cervical cancers, 50 endometrial cancers and 50 ovarian cancers) was made to form three test samples. The corresponding normal DNA from the patients of each cancer type was also pooled to form the other three control samples. Methylated alleles detected in tumors, but not in normal controls, were indicative of aberrant methylation in tumors. Having identified potential markers, frequencies of methylation were further analyzed in individual samples. Markers identified are used to correlate with clinico-pathological data of tumors using chi2 or Fisher's exact test.
Results:
APC and p16 were hypermethylated across the three cancers. MINT31 and PTEN were hypermethylated in cervical and ovarian cancers. Specific methylation was found in cervical cancer (including CDH1, DAPK, MGMT and MINT2), endometrial cancer (CASP8, CDH13, hMLH1 and p73), and ovarian cancer (BRCA1, p14, p15, RIZ1 and TMS1). The frequencies of occurrence of hypermethylation in 4 candidate genes in individual samples of each cancer type (DAPK, MGMT, p16 and PTEN in 127 cervical cancers; APC, CDH13, hMLH1 and p16 in 60 endometrial cancers; and BRCA1, p14, p16 and PTEN in 49 ovarian cancers) were examined for further confirmation. Incidence varied among different genes and in different cancer types ranging from the lowest 8.2% (PTEN in ovarian cancer) to the highest 56.7% (DAPK in cervical cancer). Aberrant methylation for some genes (BRCA1, DAPK, hMLH1, MGMT, p14, p16, and PTEN) was also associated with clinico-pathological data.
Conclusion:
Thus, differential methylation profiles occur in the three types of gynecologic cancer. Detection of methylation for critical loci is potentially useful as epigenetic markers in tumor classification. More studies using a much larger sample size are needed to define the potential role of DNA methylation as marker for cancer management.
Insights
Epigenetic gene silencing through abnormal promoter methylation is common in gynecological cancers. Detecting these methylation patterns may aid in classifying tumors and managing cancer effectively.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Epigenetic gene silencing, particularly promoter hypermethylation, is a significant driver of carcinogenesis.
- Aberrant methylation inactivates critical cellular pathways, including DNA repair, cell cycle control, and apoptosis.
- Promoter methylation is a potential molecular marker for cancer diagnosis and management.
Purpose of the Study:
- To identify potential targets for aberrant methylation in gynecological cancers (cervical, endometrial, ovarian).
- To assess the frequency and clinico-pathological correlation of gene methylation in these cancers.
Main Methods:
- Utilized a pooled DNA approach with methylation-specific PCR to screen 34 genes in gynecological cancer samples.
- Compared methylation status in pooled tumor DNA against pooled normal DNA to identify aberrant methylation.
- Analyzed methylation frequencies in individual samples and correlated findings with clinico-pathological data.
Main Results:
- Identified hypermethylation of APC and p16 across all three cancer types.
- MINT31 and PTEN showed hypermethylation in cervical and ovarian cancers.
- Specific methylation patterns were observed for CDH1, DAPK, MGMT, MINT2 (cervical); CASP8, CDH13, hMLH1, p73 (endometrial); and BRCA1, p14, p15, RIZ1, TMS1 (ovarian).
- Methylation frequencies varied significantly, with DAPK in cervical cancer showing the highest incidence (56.7%).
- Aberrant methylation of several genes (BRCA1, DAPK, hMLH1, MGMT, p14, p16, PTEN) correlated with clinico-pathological data.
Conclusions:
- Differential DNA methylation profiles distinguish between cervical, endometrial, and ovarian cancers.
- Detection of methylation at critical loci shows potential as epigenetic markers for tumor classification.
- Larger studies are required to fully define the role of DNA methylation in cancer management.
Related Concept Videos
Epigenetic Regulation
Epigenetic Regulation
X-chromosome...

