Skip to main navigation Skip to search Skip to main content

Chronic exposure to ethanol of male mice before mating produces attention deficit hyperactivity disorder-like phenotype along with epigenetic dysregulation of dopamine transporter expression in mouse offspring

  • Pitna Kim
  • , Chang Soon Choi
  • , Jin Hee Park
  • , So Hyun Joo
  • , Soo Young Kim
  • , Hyun Myung Ko
  • , Ki Chan Kim
  • , Se Jin Jeon
  • , Seung Hwa Park
  • , Seol Heui Han
  • , Jong Hoon Ryu
  • , Jae Hoon Cheong
  • , Jung Yeol Han
  • , Ki Narm Ko
  • , Chan Young Shin

Research output: Contribution to journalArticlepeer-review

92 Citations (Scopus)

Abstract

Preconception exposure to EtOH through the paternal route may affect neurobehavioral and developmental features of offspring. This study investigates the effects of paternal exposure to EtOH before conception on the hyperactivity, inattention, and impulsivity behavior of male offspring in mice. Sire mice were treated with EtOH in a concentration range approximating human binge drinking (0-4 g/kg/day EtOH) for 7 weeks and mated with untreated females mice to produce offspring. EtOH exposure to sire mice induced attention deficit hyperactivity disorder (ADHD)-like hyperactive, inattentive, and impulsive behaviors in offspring. As a mechanistic link, both protein and mRNA expression of dopamine transporter (DAT), a key determinant of ADHD-like phenotypes in experimental animals and humans, were significantly decreased by paternal EtOH exposure in cerebral cortex and striatum of offspring mice along with increased methylation of a CpG region of the DAT gene promoter. The increase in methylation of DAT gene promoter was also observed in the sperm of sire mice, suggesting germline changes in the epigenetic methylation signature of DAT gene by EtOH exposure. In addition, the expression of two key regulators of methylation-dependent epigenetic regulation of functional gene expression, namely, MeCP2 and DNMT1, was markedly decreased in offspring cortex and striatum sired by EtOH-exposed mice. These results suggest that preconceptional exposure to EtOH through the paternal route induces behavioral changes in offspring, possibly via epigenetic changes in gene expression, which is essential for the regulation of ADHD-like behaviors.

Original languageEnglish
Pages (from-to)658-670
Number of pages13
JournalJournal of Neuroscience Research
Volume92
Issue number5
DOIs
Publication statusPublished - May 2014

Keywords

  • Attention deficit hyperactivity disorders
  • Dopamine transporter
  • EtOH
  • Methyl-CpG-binding protein

Fingerprint

Dive into the research topics of 'Chronic exposure to ethanol of male mice before mating produces attention deficit hyperactivity disorder-like phenotype along with epigenetic dysregulation of dopamine transporter expression in mouse offspring'. Together they form a unique fingerprint.

Cite this