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.

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.

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