In plants, demethylation of 5-methylcytosine (5 mC) residues is controlled by DNA glycosylases, while in mammals it requires oxidation of 5 mC by TET proteins, a group of Fe(II)/2-oxoglutaratedependent dioxygenases. We analysed the effects of expressing the C-terminal catalytic domain of the human TET3 gene (TET3c) in Arabidopsis thaliana, using an rDNA region as a methylation reporter. In TET3c transformants, epialleles with hypomethylation or hypermethylation patterns can be induced, which is each stably retained in progeny lines even after removal of the TET3c transgene. In TET3c transformants, 5-hydroxymethylcytosine (5 hmC) marks are detected, indicative of the oxidative activity of the transgenic enzyme. 5-formylcytosine (5 fC) is onl...
Ten Eleven Translocation (TET) protein-catalyzed 5mC oxidation not only creates novel DNA modificati...
The discovery of hydroxymethyl-,formyl- and carboxylcytosine, generated through oxidation of methylc...
DNA methylation marks regulate gene expression and genome structure. Stability and dynamics of DNA m...
In plants, demethylation of 5-methylcytosine (5 mC) residues is controlled by DNA glycosylases, whil...
Variation in patterns of gene expression can result from modifications in the genome that occur with...
Discovery of the ten-eleven translocation 1 (TET) methylcytosine dioxygenase family of enzymes, near...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...
Cytosine DNA bases can be methylated by DNA methyltransferases and subsequently oxidized by TET prot...
Tools for actively targeted DNA demethylation are required to increase our knowledge about regulatio...
Abstract Since the discovery of methylcytosine oxidase ten-eleven translocation (TET) proteins, we h...
DNA methylation is an important epigenetic modification involved in gene regulation and transposable...
5-methylcytosine (5mC) in DNA plays an important role in gene expression, genomic imprinting, and su...
DNA methylation is one of the best-characterized epigenetic modifications 1–4. While the enzymes tha...
Three forms of methylated cytosines are present in the eukaryotic genome: 3-methylcytosine, 4-methyl...
Ten Eleven Translocation (TET) protein-catalyzed 5mC oxidation not only creates novel DNA modificati...
The discovery of hydroxymethyl-,formyl- and carboxylcytosine, generated through oxidation of methylc...
DNA methylation marks regulate gene expression and genome structure. Stability and dynamics of DNA m...
In plants, demethylation of 5-methylcytosine (5 mC) residues is controlled by DNA glycosylases, whil...
Variation in patterns of gene expression can result from modifications in the genome that occur with...
Discovery of the ten-eleven translocation 1 (TET) methylcytosine dioxygenase family of enzymes, near...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...
Cytosine DNA bases can be methylated by DNA methyltransferases and subsequently oxidized by TET prot...
Tools for actively targeted DNA demethylation are required to increase our knowledge about regulatio...
Abstract Since the discovery of methylcytosine oxidase ten-eleven translocation (TET) proteins, we h...
DNA methylation is an important epigenetic modification involved in gene regulation and transposable...
5-methylcytosine (5mC) in DNA plays an important role in gene expression, genomic imprinting, and su...
DNA methylation is one of the best-characterized epigenetic modifications 1–4. While the enzymes tha...
Three forms of methylated cytosines are present in the eukaryotic genome: 3-methylcytosine, 4-methyl...
Ten Eleven Translocation (TET) protein-catalyzed 5mC oxidation not only creates novel DNA modificati...
The discovery of hydroxymethyl-,formyl- and carboxylcytosine, generated through oxidation of methylc...
DNA methylation marks regulate gene expression and genome structure. Stability and dynamics of DNA m...