Histone Demethylases

DNA Oxidation as Triggered by H3K9me2 Demethylation Drives Estrogen-lnduced Gene Expression

Science / Regulation / DNA damage / DNA repair / Gene expression / Multidisciplinary / Estrogen Receptor / DNA / Histone Demethylases / Humans / Methylation / Histone Methylation / Chromatin / Hydrogen Peroxide / Histones / Lysine / Oxidation / DNA binding proteins / Oxidation-Reduction / Conformational Change / Estradiol / Nucleic Acid Conformation / Gene Expression Regulation / Estrogen receptor alpha / Multidisciplinary / Estrogen Receptor / DNA / Histone Demethylases / Humans / Methylation / Histone Methylation / Chromatin / Hydrogen Peroxide / Histones / Lysine / Oxidation / DNA binding proteins / Oxidation-Reduction / Conformational Change / Estradiol / Nucleic Acid Conformation / Gene Expression Regulation / Estrogen receptor alpha

Histone H3K9 methyltransferase G9a represses PPARγ expression and adipogenesis

Biological Sciences / Histone Demethylases / Cell Differentiation / Mice / Methylation / Female / Animals / Male / Adipogenesis / Chromatin / Histones / Lysine / Chromatin Immunoprecipitation / Female / Animals / Male / Adipogenesis / Chromatin / Histones / Lysine / Chromatin Immunoprecipitation
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