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Displaying 20 of 37 results for "KAT6B"
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  1. MYST4 (QKF/KAT6B/MORF) transcriptional targets in the adult dorsal cortex and E12.5 embryonic dorsal telencephalon BioProject

    ID: PRJNA127743

    Keywords: Transcriptome or Gene expression

    Access Type: download

  2. MYST4 (QKF/KAT6B/MORF) transcriptional targets in the adult dorsal cortex and E12.5 embryonic dorsal telencephalon ArrayExpress

    ID: E-GEOD-22969

    Description: MYST4 (QKF/KAT6B/MORF) is an important regulator of brain development and function through its regul...

  3. MYST4 (QKF/KAT6B/MORF) transcriptional targets in the adult dorsal cortex and E12.5 embryonic dorsal telencephalon OmicsDI

    ID: E-GEOD-22969

    Date Released: 07-19-2011

    Description: MYST4 (QKF/KAT6B/MORF) is an important regulator of brain development and function through its regul...

  4. MORF double PHD finger (DPF) in complex with histone H3K14bu PDB

    ID: PDB:5U2J

    Description: Histone H3K14bu, Histone acetyltransferase KAT6B (E.C.2.3.1.48)

  5. Identification of KAT6B signature on KAT6B deficient SCLC cell Lines BioProject

    ID: PRJNA254479

    Keywords: Transcriptome or Gene expression

    Access Type: download

  6. KAT6B gene deletion in small cell lung cancer BioProject

    ID: PRJNA265100

    Keywords: Variation

    Access Type: download

  7. Crystal structure of design pentatricopeptide repeat complex with MORF protein PDB

    ID: PDB:5IWB

    Description: N6-adenosine-methyltransferase 70 kDa subunit/N6-adenosine-methyltransferase subunit METTL14

  8. Mus musculus : mRNA profile of wild type and MRG15 null spermatids BioProject

    ID: PRJDB4706

    Keywords: Transcriptome or Gene expression

    Access Type: download

    dataset.description: MRG15 (MORF related gene on chromosome 15) is a multifunctional chromatin organizer that binds to methylated Histone H3...
  9. Morf-default NeuroMorpho.Org

    Type: image

    ID: 35144

  10. Morf-bigger NeuroMorpho.Org

    Type: image

    ID: 35143

  11. Morf-smaller NeuroMorpho.Org

    Type: image

    ID: 35145

  12. Yeast (Saccharomyces cerevisiae) Overexpression suppression study ArrayExpress

    ID: E-GEOD-24266

    Description: , pGAL:HTA2, pGAL:SNU66, and the negative control MORF plasmid (pGAL:negative, BG1766) and hybridized Affymetrix microarrays....

  13. Diverse epigenetic strategies interact to control epidermal differentiation [ChIP-Seq] ArrayExpress

    ID: E-GEOD-34556

    Description: nown to regulate epidermal self-renewal), ING5 (a MORF complex component), BPTF and SMARCA5 (NURF complex components). Genome-wide localisation and global mRNA expression analysis revealed that these factors impact two distinct but functionally related gene sets, including integrin extracellular matrix receptors that mediate anchorage of epidermal stem cells to their niche. Using a competitive epidermal reconstitution assay we confirmed that ING5, BPTF, SMARCA5, EZH2 and UHRF1 control differentiation under physiological conditions. Thus, regulation of distinct gene expression programs through the interplay between diverse epigenetic strategies protects epidermal stem cells from differentiation. Examinati...

  14. ChIP-seq of MYST acetyltransferases ArrayExpress

    ID: E-GEOD-47190

    Description: ultisubunit complexes in order to target distinct lysine residues on nucleosomal histones. Here, we characterize native HAT complexes assembled by the BRPF-family of scaffold proteins. Their PHD-ZnKnuckle-PHD domain is essentia...

  15. ChIP-seq of MYST acetyltransferases BioProject

    ID: PRJNA205078

    Keywords: Epigenomics

    Access Type: download

    dataset.description: ultisubunit complexes in order to target distinct lysine residues on nucleosomal histones. Here, we characterize native HAT complexes assembled by the BRPF-family of scaffold proteins. Their PHD-ZnKnuckle-PHD domain is essentia...
  16. KAT6B_MACFA UniProt:Swiss-Prot

    ID: Q8WML3

    Description: Histone acetyltransferase KAT6B H15 MYST-type HAT PHD-type 1 PHD-type 2 C2HC MYST-type Negatively regulates HAT activity...

  17. Yeast (Saccharomyces cerevisiae) Overexpression suppression study BioProject

    ID: PRJNA132997

    Keywords: Transcriptome or Gene expression

    Access Type: download

    dataset.description: , pGAL:HTA2, pGAL:SNU66, and the negative control MORF plasmid (pGAL:negative, BG1766) and hybridized Affymetrix microarrays....
  18. Diverse epigenetic strategies interact to control epidermal differentiation [Illumina bead array] ArrayExpress

    ID: E-GEOD-34557

    Description: nown to regulate epidermal self-renewal), ING5 (a MORF complex component), BPTF and SMARCA5 (NURF complex components). Genome-wide localisation and global mRNA expression analysis revealed that these factors impact two distinct but functionally related gene sets, including integrin extracellular matrix receptors that mediate anchorage of epidermal stem cells to their niche. Using a competitive epidermal reconstitution assay we confirmed that ING5, BPTF, SMARCA5, EZH2 and UHRF1 control differentiation under physiological conditions. Thus, regulation of distinct gene expression programs through the interplay between diverse epigenetic strategies protects epidermal stem cells from differentiation. Primary h...

  19. Diverse epigenetic strategies interact to control epidermal differentiation [ChIP-Seq] BioProject

    ID: PRJNA156425

    Keywords: Epigenomics

    Access Type: download

    dataset.description: nown to regulate epidermal self-renewal), ING5 (a MORF complex component), BPTF and SMARCA5 (NURF complex components). Genome-wide localisation and global mRNA expression analysis revealed that these factors impact two distinct but functionally related gene sets, including integrin extracellular matrix receptors that mediate anchorage of epidermal stem cells to their niche. Using a competitive epidermal reconstitution assay we confirmed that ING5, BPTF, SMARCA5, EZH2 and UHRF1 control differentiation under physiological conditions. Thus, regulation of distinct gene expression programs through the interplay between diverse epigenetic strategies protects epidermal stem cells from differentiation. Overall d...
  20. Diverse epigenetic strategies interact to control epidermal differentiation [Illumina bead array] BioProject

    ID: PRJNA156423

    Keywords: Transcriptome or Gene expression

    Access Type: download

    dataset.description: nown to regulate epidermal self-renewal), ING5 (a MORF complex component), BPTF and SMARCA5 (NURF complex components). Genome-wide localisation and global mRNA expression analysis revealed that these factors impact two distinct but functionally related gene sets, including integrin extracellular matrix receptors that mediate anchorage of epidermal stem cells to their niche. Using a competitive epidermal reconstitution assay we confirmed that ING5, BPTF, SMARCA5, EZH2 and UHRF1 control differentiation under physiological conditions. Thus, regulation of distinct gene expression programs through the interplay between diverse epigenetic strategies protects epidermal stem cells from differentiation. Overall d...

Displaying 20 of 37 results for "KAT6B"