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Published on: September 10, 2018
Morphine epigenomically regulates behavior through alterations in histone H3 lysine 9 dimethylation in the nucleus
Haosheng Sun1, Ian Maze, David M Dietz
1Fishberg Department of Neuroscience and Friedman Brain Institute, Mount Sinai School of Medicine, New York, New York 10029, USA.
Abstract:
Dysregulation of histone modifying enzymes has been associated with numerous psychiatric disorders. Alterations in G9a (Ehmt2), a histone methyltransferase that catalyzes the euchromatic dimethylation of histone H3 at lysine 9 (H3K9me2), has been implicated recently in mediating neural and behavioral plasticity in response to chronic cocaine administration. Here, we show that chronic morphine, like cocaine, decreases G9a expression, and global levels of H3K9me2, in mouse nucleus accumbens (NAc), a key brain reward region. In contrast, levels of other histone methyltransferases or demethylases, or of other methylated histone marks, were not affected in NAc by chronic morphine. Through viral-mediated gene transfer and conditional mutagenesis, we found that overexpression of G9a in NAc opposes morphine reward and locomotor sensitization and concomitantly promotes analgesic tolerance and naloxone-precipitated withdrawal, whereas downregulation of G9a in NAc enhances locomotor sensitization and delays the development of analgesic tolerance. We identified downstream targets of G9a by providing a comprehensive chromatin immunoprecipitation followed by massively parallel sequencing analysis of H3K9me2 distribution in NAc in the absence and presence of chronic morphine. These data provide novel insight into the epigenomic regulation of H3K9me2 by chronic morphine and suggest novel chromatin-based mechanisms through which morphine-induced addictive-like behaviors arise.
Insights
Chronic morphine decreases G9a histone methyltransferase and H3K9me2 levels in the mouse nucleus accumbens, impacting addiction-related behaviors. Modulating G9a influences morphine reward, tolerance, and withdrawal.
Area of Science:
- Neuroscience
- Epigenetics
- Molecular Biology
Background:
- Histone modifying enzymes are implicated in psychiatric disorders.
- G9a (Ehmt2) mediates neural plasticity in response to chronic drug use.
- Chronic cocaine alters G9a expression and H3K9me2 levels.
Purpose of the Study:
- To investigate the role of G9a and H3K9me2 in morphine addiction.
- To identify downstream targets of G9a in the nucleus accumbens (NAc).
Main Methods:
- Chronic morphine administration in mice.
- Viral-mediated gene transfer and conditional mutagenesis to alter G9a levels in NAc.
- Chromatin immunoprecipitation followed by massively parallel sequencing (ChIP-seq) to map H3K9me2 distribution.
Main Results:
- Chronic morphine decreased G9a expression and H3K9me2 levels in the mouse NAc.
- G9a overexpression opposed morphine reward and sensitization, promoting tolerance and withdrawal.
- G9a downregulation enhanced sensitization and delayed tolerance.
- ChIP-seq identified G9a downstream targets affected by chronic morphine.
Conclusions:
- Chronic morphine dysregulates G9a and H3K9me2 in the NAc.
- G9a epigenetically regulates morphine-induced addictive behaviors.
- These findings suggest novel chromatin-based mechanisms in addiction.
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Epigenetic Regulation
X-chromosome...

