Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene expression programs, and hence to several biological processes. Until recently, the only known epigenetic mark on DNA in mammals was 5-methylcytosine, established and propagated by DNA methyltransferases and generally associated with gene repression. All of a sudden, a host of new actorsc-novel cytosine modifications and the ten eleven translocation (TET) enzymesc-has appeared on the scene, sparking great interest. The challenge is now to uncover the roles they play and how they relate to DNA demethylation. Knowledge is accumulating at a frantic pace, linking these new players to essential biological processes (e.g. cell pluripotency and deve...
Methylation of the base cytosine in DNA is critical for silencing endogenous retroviruses, regulatin...
Aberrant DNA methylation is a hallmark of cancer, and dysregulated DNA methylation-demethylation cyc...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
Abstract Ten-eleven translocation (TET) family proteins (TETs), specifically, TET1, TET2 and TET3, c...
Abstract Background The ten-eleven translocation 1 (TET1) protein is a 5-methylcytosine hydroxylase ...
Discovery of the ten-eleven translocation 1 (TET) methylcytosine dioxygenase family of enzymes, near...
Epigenetics encompasses the cellular mechanisms that affect gene expression without changing an orga...
International audienceDNA methylation in unique genomic regions like enhancers and promoters contrib...
International audienceDNA methylation in unique genomic regions like enhancers and promoters contrib...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...
DNA methylation is a well-characterized epigenetic modifi-cation that plays central roles in mammali...
DNA methylation is a well-characterized epigenetic modification that plays central roles in mammalia...
Abstract Since the discovery of methylcytosine oxidase ten-eleven translocation (TET) proteins, we h...
Methylation of the base cytosine in DNA is critical for silencing endogenous retroviruses, regulatin...
Aberrant DNA methylation is a hallmark of cancer, and dysregulated DNA methylation-demethylation cyc...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
Abstract Ten-eleven translocation (TET) family proteins (TETs), specifically, TET1, TET2 and TET3, c...
Abstract Background The ten-eleven translocation 1 (TET1) protein is a 5-methylcytosine hydroxylase ...
Discovery of the ten-eleven translocation 1 (TET) methylcytosine dioxygenase family of enzymes, near...
Epigenetics encompasses the cellular mechanisms that affect gene expression without changing an orga...
International audienceDNA methylation in unique genomic regions like enhancers and promoters contrib...
International audienceDNA methylation in unique genomic regions like enhancers and promoters contrib...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...
Ten-eleven translocation 1–3 (Tet1–3) proteins have recently been discovered in mammalian cells to b...
DNA methylation is a well-characterized epigenetic modifi-cation that plays central roles in mammali...
DNA methylation is a well-characterized epigenetic modification that plays central roles in mammalia...
Abstract Since the discovery of methylcytosine oxidase ten-eleven translocation (TET) proteins, we h...
Methylation of the base cytosine in DNA is critical for silencing endogenous retroviruses, regulatin...
Aberrant DNA methylation is a hallmark of cancer, and dysregulated DNA methylation-demethylation cyc...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...