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Comparative epigenomics of human and mouse mammary tumors
Berna Demircan1, Lisa M Dyer, Mallory Gerace
1Department of Biochemistry and Molecular Biology, UF-Shands Cancer Center, University of Florida College of Medicine, Gainesville, FL 32610, USA.
Abstract:
Gene silencing by aberrant epigenetic chromatin alteration is a well-recognized event contributing to tumorigenesis. Although genetically engineered tumor-prone mouse models have proven a powerful tool in understanding many aspects of carcinogenesis, to date few studies have focused on epigenetic alterations in mouse tumors. To uncover epigenetically silenced tumor suppressor genes (TSGs) in mouse mammary tumor cells, we conducted initial genome-wide screening by combining the treatment of cultured cells with the DNA demethylating drug 5-aza-2'-deoxycytidine (5-azadC) and the histone deacetylase inhibitor trichostatin A (TSA) with expression microarray. By conducting this initial screen on EMT6 cells and applying protein function and genomic structure criteria to genes identified as upregulated in response to 5-azadC/TSA, we were able to identify two characterized breast cancer TSGs (Timp3 and Rprm) and four putative TSGs (Atp1B2, Dusp2, FoxJ1 and Smpd3) silenced in this line. By testing a panel of 10 mouse mammary tumor lines, we determined that each of these genes is commonly hypermethylated, albeit with varying frequency. Furthermore, by examining a panel of human breast tumor lines and primary tumors we observed that the human orthologs of ATP1B2, FOXJ1 and SMPD3 are aberrantly hypermethylated in the human disease whereas DUSP2 was not hypermethylated in primary breast tumors. Finally, we examined hypermethylation of several genes targeted for epigenetic silencing in human breast tumors in our panel of 10 mouse mammary tumor lines. We observed that the orthologs of Cdh1, RarB, Gstp1, RassF1 genes were hypermethylated, whereas neither Dapk1 nor Wif1 were aberrantly methylated in this panel of mouse tumor lines. From this study, we conclude that there is significant, but not absolute, overlap in the epigenome of human and mouse mammary tumors.
Insights
Epigenetic alterations silence tumor suppressor genes in mouse mammary tumors. Many silenced genes in mouse models overlap with those found in human breast cancer, aiding research into cancer epigenetics.
Area of Science:
- Epigenetics
- Cancer Biology
- Genomics
Background:
- Aberrant epigenetic chromatin modification drives tumorigenesis.
- Mouse models are crucial for cancer research, but epigenetic alterations in mouse tumors are understudied.
- Understanding epigenetic silencing in mouse mammary tumors can inform human cancer research.
Purpose of the Study:
- To identify epigenetically silenced tumor suppressor genes (TSGs) in mouse mammary tumor cells.
- To compare epigenetic alterations between mouse and human breast tumors.
- To validate mouse models for studying cancer epigenetics.
Main Methods:
- Genome-wide screening using DNA demethylating agent (5-azadC) and histone deacetylase inhibitor (TSA).
- Expression microarray analysis to identify upregulated genes.
- Functional and genomic criteria to select candidate TSGs.
- Hypermethylation analysis in mouse and human breast tumor cell lines and primary tumors.
Main Results:
- Identified characterized (Timp3, Rprm) and putative (Atp1B2, Dusp2, FoxJ1, Smpd3) TSGs silenced in mouse mammary tumor cells.
- Found common hypermethylation of these genes across multiple mouse mammary tumor lines.
- Observed aberrant hypermethylation of human orthologs (ATP1B2, FOXJ1, SMPD3) in human breast tumors.
- Confirmed hypermethylation of several human-targeted epigenetic silencing genes (Cdh1, RarB, Gstp1, RassF1) in mouse mammary tumors.
Conclusions:
- Epigenetic silencing of TSGs is a significant event in mouse mammary tumorigenesis.
- There is substantial overlap in the epigenome between human and mouse mammary tumors.
- Mouse models can effectively recapitulate key epigenetic alterations found in human breast cancer.
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