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Comprehensive Analysis of Transcription Dynamics from Brain Samples Following Behavioral Experience
Published on: August 26, 2014
Gene profiling the response to repeated cocaine self-administration in dorsal striatum: a focus on circadian genes
Wendy J Lynch1, Matthew J Girgenti, Florence J Breslin
1Department of Psychiatry and Neurobehavioral Sciences, University of Virginia, Charlottesville, VA, USA. wlynch@virginia.edu
Abstract:
Alterations in gene expression in the dorsal striatum caused by chronic cocaine exposure have been implicated in the long-term behavioral changes associated with cocaine addiction. To gain further insight into the molecular alterations that occur as a result of cocaine self-administration, we conducted a microarray analysis of gene expression followed by bioinformatic gene network analysis that allowed us to identify adaptations at the level of gene expression as well as into interconnected networks. Changes in gene expression were examined in the dorsal striatum of rats 1 day after they had self-administered cocaine for 7 days under a 24-h access, discrete trial paradigm (averaging 98 mg/kg/day). Here we report the regulation of the circadian genes Clock, Bmal1, Cryptochrome1, Period2, as well as several genes that are regulated by/associated with the circadian system (i.e., early growth response 1, dynorphin). We also observed regulation of other relevant genes (i.e., Nur77, beta catenin). These changes were then linked to curated pathways and formulated networks which identified circadian rhythm processes as affected by cocaine self-administration. These data strongly suggest involvement of circadian-associated genes in the brain's response to cocaine and may contribute to an understanding of addictive behavior including disruptions in sleep and circadian rhythmicity.
Insights
Chronic cocaine use alters gene expression in the brain, impacting circadian rhythms and potentially contributing to addiction. This study reveals specific gene network changes linked to cocaine self-administration in rats.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Chronic cocaine exposure leads to long-term behavioral changes associated with addiction.
- Gene expression alterations in the dorsal striatum are implicated in these behavioral changes.
Purpose of the Study:
- To investigate molecular adaptations in the dorsal striatum following chronic cocaine self-administration.
- To identify specific genes and gene networks affected by cocaine use.
Main Methods:
- Microarray analysis of gene expression in rat dorsal striatum.
- Bioinformatic gene network analysis to identify interconnected pathways.
- Examined gene expression 1 day after 7 days of cocaine self-administration.
Main Results:
- Identified regulation of key circadian genes (Clock, Bmal1, Cryptochrome1, Period2).
- Observed changes in associated genes like early growth response 1, dynorphin, Nur77, and beta catenin.
- Gene network analysis highlighted the involvement of circadian rhythm processes.
Conclusions:
- Cocaine self-administration significantly impacts circadian-associated gene expression in the dorsal striatum.
- These molecular changes suggest a role for circadian rhythm disruptions in cocaine addiction.
- Findings may inform understanding of addiction and associated sleep/circadian rhythm disturbances.
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