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C-Jun-N-terminal phosphorylation regulates DNMT1 expression and genome wide methylation in gliomas.


ABSTRACT: High-grade gliomas (HGG) are the most common brain tumors, with an average survival time of 14 months. A glioma-CpG island methylator phenotype (G-CIMP), associated with better clinical outcome, has been described in low and high-grade gliomas. Mutation of IDH1 is known to drive the G-CIMP status. In some cases, however, the hypermethylation phenotype is independent of IDH1 mutation, suggesting the involvement of other mechanisms. Here, we demonstrate that DNMT1 expression is higher in low-grade gliomas compared to glioblastomas and correlates with phosphorylated c-Jun. We show that phospho-c-Jun binds to the DNMT1 promoter and causes DNA hypermethylation. Phospho-c-Jun activation by Anisomycin treatment in primary glioblastoma-derived cells attenuates the aggressive features of mesenchymal glioblastomas and leads to promoter methylation and downregulation of key mesenchymal genes (CD44, MMP9 and CHI3L1). Our findings suggest that phospho-c-Jun activates an important regulatory mechanism to control DNMT1 expression and regulate global DNA methylation in Glioblastoma.

SUBMITTER: Heiland DH 

PROVIDER: S-EPMC5351681 | biostudies-literature | 2017 Jan

REPOSITORIES: biostudies-literature

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c-Jun-N-terminal phosphorylation regulates DNMT1 expression and genome wide methylation in gliomas.

Heiland Dieter H DH   Ferrarese Roberto R   Claus Rainer R   Dai Fangping F   Masilamani Anie P AP   Kling Eva E   Weyerbrock Astrid A   Kling Teresia T   Nelander Sven S   Carro Maria S MS  

Oncotarget 20170101 4


High-grade gliomas (HGG) are the most common brain tumors, with an average survival time of 14 months. A glioma-CpG island methylator phenotype (G-CIMP), associated with better clinical outcome, has been described in low and high-grade gliomas. Mutation of IDH1 is known to drive the G-CIMP status. In some cases, however, the hypermethylation phenotype is independent of IDH1 mutation, suggesting the involvement of other mechanisms. Here, we demonstrate that DNMT1 expression is higher in low-grade  ...[more]

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