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CTCF-KDM4A complex correlates with histone modifications that negatively regulate

Authors :
Lissania, Guerra-Calderas
Rodrigo, González-Barrios
Carlos César, Patiño
Nicolás, Alcaraz
Marisol, Salgado-Albarrán
David Cantú, de León
Clementina Castro, Hernández
Yesennia, Sánchez-Pérez
Héctor Aquiles, Maldonado-Martínez
Inti A, De la Rosa-Velazquez
Fernanda, Vargas-Romero
Luis A, Herrera
Alejandro, García-Carrancá
Ernesto, Soto-Reyes
Source :
Oncotarget
Publication Year :
2017

Abstract

Histone demethylase KDM4A is involved in H3K9me3 and H3K36me3 demethylation, which are epigenetic modifications associated with gene silencing and RNA Polymerase II elongation, respectively. KDM4A is abnormally expressed in cancer, affecting the expression of multiple targets, such as the CHD5 gene. This enzyme localizes at the first intron of CHD5, and the dissociation of KDM4A increases gene expression. In vitro assays showed that KDM4A-mediated demethylation is enhanced in the presence of CTCF, suggesting that CTCF could increase its enzymatic activity in vivo, however the specific mechanism by which CTCF and KDM4A might be involved in the CHD5 gene repression is poorly understood. Here, we show that CTCF and KDM4A form a protein complex, which is recruited into the first intron of CHD5. This is related to a decrease in H3K36me3/2 histone marks and is associated with its transcriptional downregulation. Depletion of CTCF or KDM4A by siRNA, triggered the reactivation of CHD5 expression, suggesting that both proteins are involved in the negative regulation of this gene. Furthermore, the knockout of KDM4A restored the CHD5 expression and H3K36me3 and H3K36me2 histone marks. Such mechanism acts independently of CHD5 promoter DNA methylation. Our findings support a novel mechanism of epigenetic repression at the gene body that does not involve promoter silencing.

Details

ISSN :
19492553
Volume :
9
Issue :
24
Database :
OpenAIRE
Journal :
Oncotarget
Accession number :
edsair.pmid..........cee8338563998fd7c8466ad71786fab4