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Updated: Aug 6, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
Cancer-linked DNA hypomethylation and its relationship to hypermethylation
1Human Genetics Program, Department of Biochemistry, and Tulane Cancer Center, Tulane Medical School, New Orleans, LA 70112, USA. ehrlich@tulane.edu
Abstract:
It is not surprising that cancer, a kind of derangement of development, hijacks DNA methylation, which is necessary for normal mammalian embryogenesis. Both decreases and increases in DNA methylation are a frequent characteristic of a wide variety of cancers. There is often more hypomethylation than hypermethylation of DNA during carcinogenesis, leading to a net decrease in the genomic 5-methylcytosine content. Although the exact methylation changes between different cancers of the same type are not the same, there are cancer type-specific differences in the frequency of hypermethylation or hypomethylation of certain genomic sequences. These opposite types of DNA methylation changes appear to be mostly independent of one another, although they may arise because of a similar abnormality leading to long-lasting epigenetic instability in cancers. Both tandem and interspersed DNA repeats often exhibit cancer-associated hypomethylation. However, one of these repeated sequences (NBL2) displayed predominant increases in methylation in some ovarian carcinomas and Wilms tumors and decreases in others. Furthermore, decreases and increases in CpG methylation can be interspersed within a small subregion of the 1.4-kb repeat unit of these tandem arrays. While the transcription-silencing role of DNA hypermethylation at promoters of many tumor-suppressor genes is clear, the biological effects of cancer-linked hypomethylation of genomic DNA are less well understood. Evidence suggests that DNA hypomethylation functions in direct or indirect control of transcription and in destabilizing chromosomal integrity. Recent studies of cancer-linked DNA hypomethylation indicate that changes to DNA methylation during tumorigenesis and tumor progression have a previously underestimated plasticity and dynamic nature.
Insights
Cancer hijacks DNA methylation, a process vital for development. Both increased and decreased DNA methylation occur in cancers, with hypomethylation often predominating, impacting genomic stability and gene transcription.
Area of Science:
- Epigenetics
- Cancer Biology
- Genomics
Background:
- DNA methylation is crucial for normal mammalian development.
- Cancer cells exhibit significant alterations in DNA methylation patterns, including both hypermethylation and hypomethylation.
- These methylation changes are widespread across various cancer types.
Purpose of the Study:
- To investigate the role of DNA methylation changes in cancer development.
- To understand the implications of both DNA hypomethylation and hypermethylation in tumorigenesis.
- To explore the dynamic nature of DNA methylation alterations during cancer progression.
Main Methods:
- Analysis of DNA methylation patterns in various cancer types.
- Comparison of methylation changes in normal versus cancerous tissues.
- Examination of specific genomic sequences, including DNA repeats and gene promoters.
Main Results:
- A net decrease in genomic 5-methylcytosine content is common in cancer due to more hypomethylation than hypermethylation.
- Cancer type-specific differences in methylation frequency exist, with some sequences showing variable methylation.
- DNA hypomethylation is linked to transcriptional dysregulation and chromosomal instability.
- DNA hypermethylation at promoters silences tumor-suppressor genes.
Conclusions:
- Cancer cells exhibit dynamic and plastic DNA methylation changes.
- Both DNA hypermethylation and hypomethylation contribute to cancer development and progression.
- Further research is needed to fully elucidate the biological effects of cancer-linked DNA hypomethylation.
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