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ATM modulates transcription in response to histone deacetylase inhibition as part of its DNA damage response
Experimental & Molecular Medicine ; : 195-204, 2010.
Article in English | WPRIM | ID: wpr-203593
ABSTRACT
Chromatin structure has a crucial role in a diversity of physiological processes, including development, differentiation and stress responses, via regulation of transcription, DNA replication and DNA damage repair. Histone deacetylase (HDAC) inhibitors regulate chromatin structure and activate the DNA damage checkpoint pathway involving Ataxia-telangiectasia mutated (ATM). Herein, we investigated the impact of histone acetylation/deacetylation modification on the ATM-mediated transcriptional modulation to provide a better understanding of the transcriptional function of ATM. The prototype HDAC inhibitor trichostain A (TSA) reprograms expression of the myeloid cell leukemia-1 (MCL1) and Gadd45alpha genes via the ATM-mediated signal pathway. Transcription of MCL1 and Gadd45alpha is enhanced following TSA treatment in ATM+ cells, but not in isogenic ATM- or kinase-dead ATM expressing cells, in the ATM-activated E2F1 or BRCA1-dependent manner, respectively. These findings suggest that ATM and its kinase activity are essential for the TSA-induced regulation of gene expression. In summary, ATM controls the transcriptional upregulation of MCL1 and Gadd45alpha through the activation of the ATM-mediated signal pathway in response to HDAC inhibition. These findings are important in helping to design combinatory treatment schedules for anticancer radio- or chemo-therapy with HDAC inhibitors.
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Full text: Available Index: WPRIM (Western Pacific) Main subject: Protein Binding / Transcription, Genetic / DNA Damage / RNA, Messenger / Nuclear Proteins / Gene Expression Regulation / Promoter Regions, Genetic / Protein Serine-Threonine Kinases / Cell Cycle Proteins / Proto-Oncogene Proteins c-bcl-2 Limits: Humans Language: English Journal: Experimental & Molecular Medicine Year: 2010 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Protein Binding / Transcription, Genetic / DNA Damage / RNA, Messenger / Nuclear Proteins / Gene Expression Regulation / Promoter Regions, Genetic / Protein Serine-Threonine Kinases / Cell Cycle Proteins / Proto-Oncogene Proteins c-bcl-2 Limits: Humans Language: English Journal: Experimental & Molecular Medicine Year: 2010 Type: Article