Related Experiment Video
Updated: Jan 20, 2026

Author Spotlight: Studying Drug Impacts on Brain Signals Using Dual LFP Recording Protocol in Mice
Published on: February 16, 2024
Cross-Species Co-analysis of Prefrontal Cortex Chronic Ethanol Transcriptome Responses in Mice and Monkeys
James W Bogenpohl1, Maren L Smith2, Sean P Farris3
1Department of Molecular Biology and Chemistry, Christopher Newport University, Newport News, VA, United States.
Abstract:
Despite recent extensive genomic and genetic studies on behavioral responses to ethanol, relatively few new therapeutic targets for the treatment of alcohol use disorder have been validated. Here, we describe a cross-species genomic approach focused on identifying gene networks associated with chronic ethanol consumption. To identify brain mechanisms underlying a chronic ethanol consumption phenotype highly relevant to human alcohol use disorder, and to elucidate potential future therapeutic targets, we conducted a genomic study in a non-human primate model of chronic open-access ethanol consumption. Microarray analysis of RNA expression in anterior cingulate and subgenual cortices from rhesus macaques was performed across multiple cohorts of animals. Gene networks correlating with ethanol consumption or showing enrichment for ethanol-regulated genes were identified, as were major ethanol-related hub genes within these networks. A subsequent consensus module analysis was used to co-analyze monkey data with expression data from a chronic intermittent ethanol vapor-exposure and consumption model in C57BL/6J mice. Ethanol-related gene networks conserved between primates and rodents were enriched for genes involved in discrete biological functions, including; myelination, synaptic transmission, chromatin modification, Golgi apparatus function, translation, cellular respiration, and RNA processing. The myelin-related network, in particular, showed strong correlations with ethanol consumption behavior and displayed marked network reorganization between control and ethanol-drinking animals. Further bioinformatics analysis revealed that these networks also showed highly significant overlap with other ethanol-regulated gene sets. Altogether, these studies provide robust primate and rodent cross-species validation of gene networks associated with chronic ethanol consumption. Our results also suggest potential novel focal points for future therapeutic interventions in alcohol use disorder.
Insights
This study identified conserved gene networks in primates and rodents linked to chronic alcohol consumption. These findings highlight myelination and synaptic transmission as potential targets for alcohol use disorder therapies.
Area of Science:
- Neurogenomics
- Behavioral Neuroscience
- Genetics
Background:
- Alcohol use disorder (AUD) remains a significant public health challenge with limited validated therapeutic targets.
- Previous genomic studies have not fully elucidated the complex genetic underpinnings of chronic ethanol consumption.
Purpose of the Study:
- To identify conserved gene networks associated with chronic ethanol consumption using a cross-species genomic approach.
- To uncover potential novel therapeutic targets for alcohol use disorder by examining brain mechanisms in non-human primates and rodents.
Main Methods:
- Genomic analysis of RNA expression in rhesus macaque brain regions (anterior cingulate and subgenual cortices) from animals with chronic ethanol consumption.
- Consensus module analysis to integrate primate data with mouse models of ethanol exposure.
- Bioinformatics analysis to identify gene networks, hub genes, and biological functions related to ethanol consumption.
Main Results:
- Identified gene networks correlating with ethanol consumption and enriched for ethanol-regulated genes in primates.
- Discovered conserved ethanol-related gene networks between primates and rodents, particularly those involved in myelination and synaptic transmission.
- Observed significant network reorganization in myelination-related genes between control and ethanol-drinking animals.
Conclusions:
- Provides cross-species validation of gene networks associated with chronic ethanol consumption in primate and rodent models.
- Suggests that genes involved in myelination, synaptic transmission, and other biological functions represent promising targets for future alcohol use disorder therapeutics.
More Related Videos
10:33Correlating Behavioral Responses to fMRI Signals from Human Prefrontal Cortex: Examining Cognitive Processes Using Task Analysis
Published on: June 20, 2012
07:42Combined Transcranial Magnetic Stimulation and Electroencephalography of the Dorsolateral Prefrontal Cortex
Published on: August 17, 2018
Related Concept Videos
Role of Cerebellum and Prefrontal Cortex in Memory
What is a Species?
Crossing Over
The homologous pairs of sister chromosomes—one from the maternal and one from the paternal genome—then begin to align alongside each other lengthwise, matching corresponding DNA positions in a process...
Crossing Over
Keystone Species
Formation of Species