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ACSS2 mediates prenatal alcohol exposure-related morphological and behavioral phenotypes

  • Kala M. Dodson
  • , Erica M. Periandri
  • , Anjali Yadav
  • , Mariana Lopes
  • , Amelia J. Barfield
  • , Anjola Ola
  • , Francisca N. de Luna Vitorino
  • , Cory Cearlock
  • , Benjamin A. Garcia
  • , Cheryl A. Hill
  • , Susan E. Maloney
  • , Gabor Egervari

Research output: Contribution to journalArticlepeer-review

Abstract

AbstractThe metabolic enzyme Acetyl-CoA Synthetase 2 (ACSS2) recently emerged as an unexpected regulator of molecular and behavioral changes associated with alcohol use. Its role during prenatal exposure, however, remains unknown. Here, we use a combination of proteomic, genomic and behavioral approaches to establish ACSS2 as a key mediator of prenatal alcohol exposure-related phenotypes. We define the developmental window during which ACSS2 translocates to nuclei in the mouse brain, and show that alcohol-derived acetate is incorporated into fetal brain histone acetylation in utero. Using genetically engineered mice not expressing ACSS2, we demonstrate that loss of this enzyme attenuates chronic prenatal alcohol exposure-induced craniofacial abnormalities, motor function deficits, cognitive impairments as well as associated chromatin and gene expression changes in the dorsal hippocampus and the cerebellar vermis. Our results outline a previously unknown mechanism underlying prenatal alcohol exposure-related phenotypes regulated by ACSS2, which will inform the development of future therapeutic interventions.

Original languageEnglish
Article number107341
JournalNeurobiology of Disease
Volume221
DOIs
StatePublished - Apr 2026
Externally publishedYes

Keywords

  • Behavior
  • Epigenetics
  • Gene expression
  • Morphology
  • Prenatal alcohol exposure

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