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Publication : Loss of Dnmt3a induces CLL and PTCL with distinct methylomes and transcriptomes in mice.

First Author  Haney SL Year  2016
Journal  Sci Rep Volume  6
Pages  34222 PubMed ID  27677595
Mgi Jnum  J:259573 Mgi Id  MGI:6101968
Doi  10.1038/srep34222 Citation  Haney SL, et al. (2016) Loss of Dnmt3a induces CLL and PTCL with distinct methylomes and transcriptomes in mice. Sci Rep 6:34222
abstractText  Cytosine methylation of DNA is an epigenetic modification involved in the repression of genes that affect biological processes including hematopoiesis. It is catalyzed by DNA methyltransferases, one of which -DNMT3A- is frequently mutated in human hematologic malignancies. We have previously reported that Dnmt3a inactivation in hematopoietic stem cells results in chronic lymphocytic leukemia (CLL) and CD8-positive peripheral T cell lymphomas (PTCL) in EmuSRalpha-tTA;Teto-Cre;Dnmt3a(fl/fl); Rosa26LOXP(EGFP/EGFP) (Dnmt3a(Delta/Delta)) mice. The extent to which molecular changes overlap between these diseases is not clear. Using high resolution global methylation and expression analysis we show that whereas patterns of methylation and transcription in normal B-1a cells and CD8-positive T cells are similar, methylomes and transcriptomes in malignant B-1a and CD8+ T cells are remarkably distinct, suggesting a cell-type specific function for Dnmt3a in cellular transformation. Promoter hypomethylation in tumors was 10 times more frequent than hypermethylation, three times more frequent in CLL than PTCL and correlated better with gene expression than hypermethylation. Cross-species molecular comparison of mouse and human CLL and PTCL reveals significant overlaps and identifies putative oncogenic drivers of disease. Thus, Dnmt3a(Delta/Delta) mice can serve as a new mouse model to study CLL and PTCL in relevant physiological settings.
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