Aberrant NMDA receptor DNA methylation detected by epigenome-wide analysis of hippocampus and prefrontal cortex in major depression

被引:0
作者
Oliver Kaut
Ina Schmitt
Andrea Hofmann
Per Hoffmann
Thomas E. Schlaepfer
Ullrich Wüllner
René Hurlemann
机构
[1] University of Bonn,Department of Neurology
[2] German Center for Neurodegenerative Diseases (DZNE),Department of Genomics
[3] Life & Brain Center,Human Genomics Research Group, Department of Biomedicine
[4] University of Basel,Department of Psychiatry
[5] University of Bonn,Department of Psychiatry and Behavioral Medicine
[6] The Johns Hopkins Hospital,Division of Medical Psychology
[7] University of Bonn,undefined
来源
European Archives of Psychiatry and Clinical Neuroscience | 2015年 / 265卷
关键词
Depression; Epigenetics; Hippocampus; NMDA receptor; Prefrontal cortex;
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学科分类号
摘要
Current perspectives on the molecular underpinnings of major depressive disorder (MDD) posit a mechanistic role of epigenetic DNA modifications in mediating the interaction between environmental risk factors and a genetic predisposition. However, conclusive evidence for differential methylation signatures in the brain’s epigenome of MDD patients as compared to controls is still lacking. To address this issue, we conducted a pilot study including an epigenome-wide methylation analysis in six individuals diagnosed with recurrent MDD and six control subjects matched for age and gender, with a priori focus on the hippocampus and prefrontal cortex as pathophysiologically relevant candidate regions. Our analysis revealed differential methylation profiles of 11 genes in hippocampus and 20 genes in prefrontal cortex, five of which were selected for replication of the methylation status using pyrosequencing. Among these replicated targets, GRIN2A was found to be hypermethylated in both prefrontal cortex and hippocampus. This finding may be of particular functional relevance as GRIN2A encodes the glutamatergic N-methyl-d-aspartate receptor subunit epsilon-1 (NR2A) and is known to be involved in a plethora of synaptic plasticity-related regulatory processes probably disturbed in MDD.
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页码:331 / 341
页数:10
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