Abstract Ten-eleven translocation (TET) family proteins (TETs), specifically, TET1, TET2 and TET3, can modify DNA by oxidizing 5-methylcytosine (5mC) iteratively to yield 5-hydroxymethylcytosine (5hmC), 5-formylcytosine (5fC), and 5-carboxycytosine (5caC), and then two of these intermediates (5fC and 5caC) can be excised and return to unmethylated cytosines by thymine-DNA glycosylase (TDG)-mediated base excision repair. Because DNA methylation and demethylation play an important role in numerous biological processes, including zygote formation, embryogenesis, spatial learning and immune homeostasis, the regulation of TETs functions is complicated, and dysregulation of their functions is implicated in many diseases such as myeloid malignanci...
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...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
International audienceDNA methylation in unique genomic regions like enhancers and promoters contrib...
International audienceDNA methylation in unique genomic regions like enhancers and promoters contrib...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
DNA methylation is a well-characterized epigenetic modification that plays central roles in mammalia...
DNA methylation has pivotal regulatory roles in mammalian development, retrotransposon silencing, ge...
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...
Abstract Background The ten-eleven translocation 1 (TET1) protein is a 5-methylcytosine hydroxylase ...
DNA methylation at the C-5 position of cytosine (5mC) is one of the best-studied epigenetic modifica...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...
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...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
International audienceDNA methylation in unique genomic regions like enhancers and promoters contrib...
International audienceDNA methylation in unique genomic regions like enhancers and promoters contrib...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
DNA methylation is a well-characterized epigenetic modification that plays central roles in mammalia...
DNA methylation has pivotal regulatory roles in mammalian development, retrotransposon silencing, ge...
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...
Abstract Background The ten-eleven translocation 1 (TET1) protein is a 5-methylcytosine hydroxylase ...
DNA methylation at the C-5 position of cytosine (5mC) is one of the best-studied epigenetic modifica...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...
The methylation of cytosine and subsequent oxidation constitutes a fundamental epigenetic modificati...
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...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...