International audienceTET (ten-eleven translocation) enzymes initiate active cytosine demethylation via the oxidation of 5-methylcytosine. TET1 is composed of a C-terminal domain, which bears the catalytic activity of the enzyme, and a N-terminal region that is less well characterized except for the CXXC domain responsible for the targeting to CpG islands. While cytosine demethylation induced by TET1 promotes transcription, this protein also interacts with chromatin-regulating factors that rather silence this process, the coordination between these two opposite functions of TET1 being unclear. In the present work, we uncover a new function of the N-terminal part of the TET1 protein in the regulation of the chromatin architecture. This domai...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
Cytosine modifications diversify and structure the genome thereby controlling proper development and...
Ten Eleven Translocation (TET) protein-catalyzed 5mC oxidation not only creates novel DNA modificati...
International audienceTET (ten-eleven translocation) enzymes initiate active cytosine demethylation ...
International audienceTET (ten-eleven translocation) enzymes initiate active cytosine demethylation ...
International audienceTET (ten-eleven translocation) enzymes initiate active cytosine demethylation ...
The chromatin, composed of DNA and histone proteins, dysplays a complex and dynamic multiscale struc...
La chromatine, composée d’ADN et de protéines histones, possède une structure multi-échelle complexe...
La chromatine, composée d’ADN et de protéines histones, possède une structure multi-échelle complexe...
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...
Oxidation of the epigenetic DNA mark 5-methylcytosine by Tet dioxygenases is an established route to...
Discovery of the ten-eleven translocation 1 (TET) methylcytosine dioxygenase family of enzymes, near...
Oxidation of the epigenetic DNA mark 5-methylcytosine by Tet dioxygenases is an established route to...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
Cytosine modifications diversify and structure the genome thereby controlling proper development and...
Ten Eleven Translocation (TET) protein-catalyzed 5mC oxidation not only creates novel DNA modificati...
International audienceTET (ten-eleven translocation) enzymes initiate active cytosine demethylation ...
International audienceTET (ten-eleven translocation) enzymes initiate active cytosine demethylation ...
International audienceTET (ten-eleven translocation) enzymes initiate active cytosine demethylation ...
The chromatin, composed of DNA and histone proteins, dysplays a complex and dynamic multiscale struc...
La chromatine, composée d’ADN et de protéines histones, possède une structure multi-échelle complexe...
La chromatine, composée d’ADN et de protéines histones, possède une structure multi-échelle complexe...
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...
Oxidation of the epigenetic DNA mark 5-methylcytosine by Tet dioxygenases is an established route to...
Discovery of the ten-eleven translocation 1 (TET) methylcytosine dioxygenase family of enzymes, near...
Oxidation of the epigenetic DNA mark 5-methylcytosine by Tet dioxygenases is an established route to...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
Epigenetic genome marking and chromatin regulation are central to establishing tissue-specific gene ...
Cytosine modifications diversify and structure the genome thereby controlling proper development and...
Ten Eleven Translocation (TET) protein-catalyzed 5mC oxidation not only creates novel DNA modificati...