Original Article
Oncogene (2006) 25, 6975–6985. doi:10.1038/sj.onc.1209678; published online 22 May 2006
Epigenetic regulation of X-linked cancer/germline antigen genes by DNMT1 and DNMT3b
S R James1, P A Link1 and A R Karpf1
1Department of Pharmacology and Therapeutics, Roswell Park Cancer Institute, Cancer Drug Center, Buffalo, New York, NY USA
Correspondence: Dr AR Karpf, Department of Pharmacology and Therapeutics, Roswell Park Cancer Institute, Elm and Carlton Streets, Cancer Drug Center, Buffalo, NY 14263, USA. E-mail: adam.karpf@roswellpark.org
Received 7 June 2005; Revised 1 March 2006; Accepted 30 March 2006; Published online 22 May 2006.
Abstract
We examined the function of two key DNA methyltransferase (DNMT) enzymes in epigenetic regulation of X-linked cancer/germline (CG-X) antigen genes in human cancer cells, using MAGE-A1, NY-ESO-1, and XAGE-1 as models. In HCT116 cells, genetic knockout of DNMT1 caused moderate activation of CG-X genes, DNMT3b knockout had a negligible effect, and double knockout of both enzymes caused robust gene induction. Similarly, dual DNMT knockout caused dramatic hypomethylation of the MAGE-A1 and NY-ESO-1 promoters, DNMT1 knockout showed moderate hypomethylation, and DNMT3b knockout elicited only slight methylation changes. In contrast, both single and double knockout cells showed significant hypomethylation of the XAGE-1 promoter. RNA interference (RNAi) targeting of DNMT1 in HCT116 cells validated the results seen using genetic knockout cells; however, RNAi targeting of DNMT1 in a different colorectal cancer cell line revealed a greater independent role for DNMT1 in mediating CG-X gene repression and promoter methylation in other cell types. Notably, the histone H3 modification pattern at CG-X promoters was altered following DNMT knockout. DNMT1 or DNMT3b knockout reduced dimethylated lysine-9 (diMe-H3K9) levels, but did not significantly affect dimethylated lysine-4 (diMe-H3K4) or acetylated lysine-9 (Ac-H3-K9) levels. In contrast, dual DNMT1/3b knockout reduced the level of diMe-H3K9 and dramatically increased the levels of diMe-H3K4 and Ac-H3K9 at CG-X gene loci. In summary, DNMT1 and DNMT3b were found to perform both redundant and independent functions in epigenetic regulation of CG-X antigen genes in human cancer cells.
Keywords:
cancer/germline antigens, cancer-testis antigens, DNMT1, DNMT3b, gene expression, DNA methylation, histone modifications
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