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Displaying 20 of 131 results for "TET3"
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  1. TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS ArrayExpress

    ID: E-GEOD-36620

    Description: TET proteins convert 5-methylcytosine to 5-hydroxymethylcytosine, an emerging dynamic epigenetic state of DNA th...

  2. TET2 and TET3 regulate GlcNAcylation and H3K4 methylation through OGT and SET1/COMPASS BioProject

    ID: PRJNA153707

    Keywords: Epigenomics

    Access Type: download

  3. Role of Tet3 and DNA replication in zygotic demethylation of both paternal and maternal genomes [RNA-seq] OmicsDI

    ID: E-GEOD-61329

    Date Released: 10-25-2014

    Description: n development. Recent studies have suggested that Tet3-mediated oxidation of 5-methylcytosine (5mC) and DNA replication-dependent dilution both contribute to global paternal DNA demethylation, but demethylation of the maternal genome occurs via replication. Here we present geno...

  4. Control of 5mC and 5hmC by TET dioxygenases in human embryonic carcinoma cells [Microarray] ArrayExpress

    ID: E-GEOD-51901

    Description: The TET family of dioxygenases catalyze conversion of 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC), but ...

  5. Effect of TET1 and TET3 overexpression on the transcriptome of HEK293 cells BioProject

    ID: PRJNA170177

    Keywords: Transcriptome or Gene expression

    Access Type: download

  6. PGC7 and TET3 ChIP-seq results BioProject

    ID: PRJNA233405

    Keywords: Epigenomics

    Access Type: download

  7. Genome-wide mapping of the TET3 CXXC domain binding sites BioProject

    ID: PRJNA177404

    Keywords: Epigenomics

    Access Type: download

  8. Zinc finger region of human TET3 in complex with CpG DNA PDB

    ID: PDB:4Z3C

    Description: TET3/DNA Complex

  9. PGC7 and TET3 ChIP-seq results ArrayExpress

    ID: E-GEOD-53809

    Description: rogramming in the zygote following fertilization. TET3 is a dioxygenase that catalyzes the conversion of the modified genomic base 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC) and plays a key role in epigenetic chromatin...

  10. Rest recruits neuronal Tet3 to induce chromatin remodeling and gene expression OmicsDI

    ID: PXD001857

    Date Released: 04-02-2015

    Description: Ten-eleven translocation (Tet) hydroxylases (Tet1-3) oxidize 5-methylcytosine (5mC) to 5-hydroxymethylcytosine (5hmC). ...

  11. Time course of gene expression signatures for Tet3 induced neurons BioProject

    ID: PRJNA314125

    Keywords: Transcriptome or Gene expression

    Access Type: download

  12. Haploinsufficiency, but not defective paternal 5mC oxidation, accounts for the developmental defects of maternal Tet3 knockouts ArrayExpress

    ID: E-GEOD-62719

    Description: udies have revealed that this is achieved through Tet3-mediated iterative oxidation of 5-methylcytosine (5mC) coupled with replication-dependent dilution. Tet3-mediated paternal DNA demethylation is believed to be required for mouse development given that <...

  13. Role of Tet3 and DNA replication in zygotic demethylation of both paternal and maternal genomes [RRBS] ArrayExpress

    ID: E-GEOD-61330

    Description: n development. Recent studies have suggested that Tet3-mediated oxidation of 5-methylcytosine (5mC) and DNA replication-dependent dilution both contribute to global paternal DNA demethylation, but demethylation of the maternal genome occurs via replication. Here we present geno...

  14. Control of 5mC and 5hmC by TET dioxygenases in human embryonic carcinoma cells [Microarray] BioProject

    ID: PRJNA225796

    Keywords: Transcriptome or Gene expression

    Access Type: download

  15. Effect of TET1 and TET3 overexpression on the transcriptome of HEK293 cells ArrayExpress

    ID: E-GEOD-39186

    Description: We compared TET1 and TET3 overexpressing cells to uninduced cells with endogenous levels of the respective transcript to determine global gene expressio...

  16. Haploinsufficiency, but not defective paternal 5mC oxidation, accounts for the developmental defects of maternal Tet3 knockouts BioProject

    ID: PRJNA264894

    Keywords: Epigenomics

    Access Type: download

  17. Role of Tet3 and DNA replication in zygotic demethylation of both paternal and maternal genomes [RRBS] OmicsDI

    ID: E-GEOD-61330

    Date Released: 10-25-2014

    Description: n development. Recent studies have suggested that Tet3-mediated oxidation of 5-methylcytosine (5mC) and DNA replication-dependent dilution both contribute to global paternal DNA demethylation, but demethylation of the maternal genome occurs via replication. Here we present geno...

  18. Role of Tet3 and DNA replication in zygotic demethylation of both paternal and maternal genomes [RNA-seq] BioProject

    ID: PRJNA260791

    Keywords: Transcriptome or Gene expression

    Access Type: download

  19. Haploinsufficiency, but not defective paternal 5mC oxidation, accounts for the developmental defects of maternal Tet3 knockouts OmicsDI

    ID: E-GEOD-62719

    Date Released: 03-12-2015

    Description: udies have revealed that this is achieved through Tet3-mediated iterative oxidation of 5-methylcytosine (5mC) coupled with replication-dependent dilution. Tet3-mediated paternal DNA demethylation is believed to be required for mouse development given that <...

  20. The role of Tet3 in regulating gene expression in response to global synaptic activity changes BioProject

    ID: PRJNA279316

    Keywords: Transcriptome or Gene expression

    Access Type: download


Displaying 20 of 131 results for "TET3"