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Eukaryotic gene expression profiles are largely defined by transcription factors that recognize specific DNA sequences in gene regulatory regions and impact RNA polymerase recruitment and transcription. In addition to specific core promoter regulatory elements, up to 70% of genes in higher eukaryote...
ORGANISM(S): Mus musculus 
The nucleosome acidic patch is a major interaction hub for chromatin, providing a platform for enzymes to dock and orient for nucleosome-targeted activities. In order to define the molecular basis of acidic patch recognition proteome-wide, we performed an amino acid resolution acidic patch interacto...
ORGANISM(S): Homo sapiens (Human) 
2023-02-14 | PXD032791 | Pride
Transcription factors that bind small DNA motifs embedded in promoters play a central role in controlling gene expression. However, in addition to these elements, up to 70% of genes in higher eukaryotes also have high levels of non-methylated cytosine/guanine base pairs (CpGs) surrounding promoters ...
ORGANISM(S): Homo sapiens 
Transcriptome analysis of histone demethylase Kdm2a knockout in mouse embryonic stem cells
Tumor Cell Clustering Enhances Metastatic Competence by Regulating the H3K36 Histone Demethylase KDM2A
H3K36 methylation plays an important role in gene regulation. The role of H3K36 demethylase Kdm2b has been well studied. However, the role of Kdm2a in embryonic stem cells are still unkonwn. To study the function of Kdm2a in embryonic stem cells. We used CRISPR-gRNA system to knockout Kdm2a. We anal...
ORGANISM(S): Mus musculus 
2019-08-20 | GSE117148 | GEO
This SuperSeries is composed of the following subset Series: GSE18588: CpG islands recruit a histone H3 lysine 36 demethylase [Illumina sequencing data] GSE21201: CpG islands recruit a histone H3 lysine 36 demethylase [Agilent data] Refer to individual Series
ORGANISM(S): Homo sapiens 
Tumor Cell Clustering Enhances Metastatic Competence by Regulating the H3K36 Histone Demethylase KDM2A [ChIP-Seq]
The Role of KDM2A and H3K36me2 Demethylation in Modulating MAPK Signaling during Neurodevelopment [ChIP-seq]
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