Epigenetic modification of the mammalian genome by DNA methylation (5-methylcytosine) has a profound impact on chromatin structure, gene expression and maintenance of cellular identity1. The recent demonstration that members of the Ten-eleven translocation (Tet) family of proteins can convert 5-methylcytosine to 5-hydroxymethylcytosine raised the possibility that Tet proteins are capable of establishing a distinct epigenetic state2,3. We have recently demonstrated that Tet1 is specifically expressed in murine embryonic stem (ES) cells and is required for ES cell maintenance2. Using chromatin immunoprecipitation coupled with high-throughput DNA sequencing, here we show in mouse ES cells that Tet1 is preferentially bound to CpG-rich sequences...
DNA methylation (5-methylcytosine (5mC)) is critical for genome stability and transcriptional regula...
DNA methylation (5-methylcytosine (5mC)) is critical for genome stability and transcriptional regula...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...
Epigenetic modification of the mammalian genome by DNA methylation (5-methylcytosine) has a profound...
Inner cell mass (ICM) cells of a blastocyst, the source of embryonic stem (ES) cells, are characteri...
Inner cell mass (ICM) cells of a blastocyst, the source of embryonic stem (ES) cells, are characteri...
Ten-eleven translocation (Tet) genes encode for a family of hydroxymethylase enzymes involved in reg...
The Tet 5-methylcytosine dioxygenases catalyze DNA demethylation by producing 5-hydroxymethylcytosin...
SummaryTET family enzymes convert 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC) in DNA. H...
Abstract Background DNA methylation is a heritable epigenetic mark, enabling stable but reversible g...
DNA and chromatin-modifying enzymes establish an ESC/iPSC-specific epigenomic landscape that is link...
DNA methylation is one of the best-characterized epigenetic modifications 1–4. While the enzymes tha...
DNA methylation is one of the best-characterized epigenetic modifications 1–4. While the enzymes tha...
SummaryThe Tet family of enzymes (Tet1/2/3) converts 5-methylcytosine (5mC) to 5-hydroxymethylcytosi...
The mammalian TET enzymes catalyze DNA demethylation. While they have been intensely studied as majo...
DNA methylation (5-methylcytosine (5mC)) is critical for genome stability and transcriptional regula...
DNA methylation (5-methylcytosine (5mC)) is critical for genome stability and transcriptional regula...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...
Epigenetic modification of the mammalian genome by DNA methylation (5-methylcytosine) has a profound...
Inner cell mass (ICM) cells of a blastocyst, the source of embryonic stem (ES) cells, are characteri...
Inner cell mass (ICM) cells of a blastocyst, the source of embryonic stem (ES) cells, are characteri...
Ten-eleven translocation (Tet) genes encode for a family of hydroxymethylase enzymes involved in reg...
The Tet 5-methylcytosine dioxygenases catalyze DNA demethylation by producing 5-hydroxymethylcytosin...
SummaryTET family enzymes convert 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC) in DNA. H...
Abstract Background DNA methylation is a heritable epigenetic mark, enabling stable but reversible g...
DNA and chromatin-modifying enzymes establish an ESC/iPSC-specific epigenomic landscape that is link...
DNA methylation is one of the best-characterized epigenetic modifications 1–4. While the enzymes tha...
DNA methylation is one of the best-characterized epigenetic modifications 1–4. While the enzymes tha...
SummaryThe Tet family of enzymes (Tet1/2/3) converts 5-methylcytosine (5mC) to 5-hydroxymethylcytosi...
The mammalian TET enzymes catalyze DNA demethylation. While they have been intensely studied as majo...
DNA methylation (5-methylcytosine (5mC)) is critical for genome stability and transcriptional regula...
DNA methylation (5-methylcytosine (5mC)) is critical for genome stability and transcriptional regula...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...