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DMSO is a strong inducer of DNA hydroxymethylation in pre-osteoblastic MC3T3-E1 cells
Authors:Hisato Kobayashi  Eikichi Yanagisawa  Akihiko Sakashita  Naoko Sugawara  Shiori Kumakura  Hidehiko Ogawa  Hidenori Akutsu  Kenichiro Hata  Kazuhiko Nakabayashi  Tomohiro Kono
Institution:1.Department of BioScience; Tokyo University of Agriculture; Tokyo, Japan;2.Department of Maternal-Fetal Biology; National Research Institute for Child Health and Development; Tokyo, Japan;3.Department of Reproductive Biology; National Research Institute for Child Health and Development; Tokyo, Japan;4.Genome Research Center; NODAI Research Institute; Tokyo University of Agriculture; Setagaya-ku; Tokyo, Japan
Abstract:Artificial induction of active DNA demethylation appears to be a possible and useful strategy in molecular biology research and therapy development. Dimethyl sulfoxide (DMSO) was shown to cause phenotypic changes in embryonic stem cells altering the genome-wide DNA methylation profiles. Here we report that DMSO increases global and gene-specific DNA hydroxymethylation levels in pre-osteoblastic MC3T3-E1 cells. After 1 day, DMSO increased the expression of genes involved in DNA hydroxymethylation (TET) and nucleotide excision repair (GADD45) and decreased the expression of genes related to DNA methylation (Dnmt1, Dnmt3b, Hells). Already 12 hours after seeding, before first replication, DMSO increased the expression of the pro-apoptotic gene Fas and of the early osteoblastic factor Dlx5, which proved to be Tet1 dependent. At this time an increase of 5-methyl-cytosine hydroxylation (5-hmC) with a concomitant loss of methyl-cytosines on Fas and Dlx5 promoters as well as an increase in global 5-hmC and loss in global DNA methylation was observed. Time course-staining of nuclei suggested euchromatic localization of DMSO induced 5-hmC. As consequence of induced Fas expression, caspase 3/7 and 8 activities were increased indicating apoptosis. After 5 days, the effect of DMSO on promoter- and global methylation as well as on gene expression of Fas and Dlx5 and on caspases activities was reduced or reversed indicating down-regulation of apoptosis. At this time, up regulation of genes important for matrix synthesis suggests that DMSO via hydroxymethylation of the Fas promoter initially stimulates apoptosis in a subpopulation of the heterogeneous MC3T3-E1 cell line, leaving a cell population of extra-cellular matrix producing osteoblasts.
Keywords:DNA Methylation  DNA hydroxymethylation  apoptosis  dimethylsulfoxide  osteoblasts
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