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Updated: Jun 19, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
Epigenetic modifications induced by RGC-32 in colon cancer
Sonia I Vlaicu1, Cosmin A Tegla, Cornelia D Cudrici
1Department of Neurology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Abstract:
First described as a cell cycle activator, RGC-32 is both an activator and a substrate for CDC2. Deregulation of RGC-32 expression has been detected in a wide variety of human cancers. We have now shown that RGC-32 is expressed in precancerous states, and its expression is significantly higher in adenomas than in normal colon tissue. The expression of RGC-32 was higher in advanced stages of colon cancer than in precancerous states or the initial stages of colon cancer. In order to identify the genes that are regulated by RGC-32, we used gene array analysis to investigate the effect of RGC-32 knockdown on gene expression in the SW480 colon cancer cell line. Of the 230 genes that were differentially regulated after RGC-32 knockdown, a group of genes involved in chromatin assembly were the most significantly regulated in these cells: RGC-32 knockdown induced an increase in acetylation of histones H2B lysine 5 (H2BK5), H2BK15, H3K9, H3K18, and H4K8. RGC-32 silencing was also associated with decreased expression of SIRT1 and decreased trimethylation of histone H3K27 (H3K27me3). In addition, RGC-32 knockdown caused a significantly higher percentage of SW480 cells to enter S phase and subsequently G2/M. These data suggest that RGC-32 may contribute to the development of colon cancer by regulating chromatin assembly.
Insights
RGC-32, a cell cycle regulator, is elevated in colon cancer and precancerous states. Its knockdown affects chromatin assembly genes and cell cycle progression, suggesting a role in colon cancer development.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- RGC-32 is a cell cycle activator and substrate for CDC2.
- RGC-32 expression is deregulated in various human cancers.
- RGC-32 is present in precancerous states and its levels increase with colon cancer progression.
Purpose of the Study:
- To investigate the role of RGC-32 in colon cancer development.
- To identify genes regulated by RGC-32.
- To understand the mechanism by which RGC-32 influences cell cycle progression.
Main Methods:
- Gene array analysis was performed to assess gene expression changes after RGC-32 knockdown in SW480 colon cancer cells.
- Histone acetylation and trimethylation levels were analyzed.
- Cell cycle progression was monitored using flow cytometry.
Main Results:
- RGC-32 knockdown significantly altered the expression of genes involved in chromatin assembly.
- RGC-32 silencing led to increased acetylation of histones H2BK5, H2BK15, H3K9, H3K18, and H4K8.
- RGC-32 knockdown decreased SIRT1 expression and H3K27 trimethylation, promoting cell cycle entry into S and G2/M phases.
Conclusions:
- RGC-32 plays a role in regulating chromatin assembly.
- RGC-32 may contribute to colon cancer development by influencing chromatin assembly and cell cycle progression.
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