Adolescent alcohol exposure epigenetically regulates CREB signaling in the adult amygdala.
Huaibo ZhangEvan J KyzarJohn Peyton BohnsackDadasaheb M KokareTara TeppenSubhash C PandeyPublished in: Scientific reports (2018)
Binge alcohol drinking in adolescence leads to increased risk for alcohol use and other psychiatric disorders in adulthood. The transcription factor cAMP-response element binding (CREB) protein is involved in the neuronal response to adult ethanol exposure, but its role in the enduring effects of adolescent alcohol exposure in adulthood is unknown. We exposed male rats to adolescent intermittent ethanol (AIE) or saline (AIS) during post-natal days 28-41 and evaluated the epigenetic regulation of CREB dynamics in the adult amygdala. A subset of these adult rats was exposed to an acute ethanol challenge. AIE decreased CREB, phosphorylated CREB, CREB-binding protein (CBP) and p300 protein levels in adult amygdaloid brain structures. AIE exposure also causes deficits in Creb1, Cbp, and p300 mRNA expression in the amygdala of AIE adult rats which are normalized after acute ethanol exposure. Interestingly, occupancy of acetylated histone H3K9/14 proteins at specific locations in the Creb1, Cbp, and p300 gene promoter regions was decreased in the amygdala of AIE adult rats and was normalized by acute ethanol exposure. These results suggest that AIE exposure epigenetically reduces CREB and other related transcriptional activators in the amygdala in adulthood that may be associated with the behavioral effects of adolescent alcohol exposure.
Keyphrases
- binding protein
- functional connectivity
- transcription factor
- childhood cancer
- young adults
- mental health
- resting state
- depressive symptoms
- living cells
- fluorescent probe
- dna methylation
- traumatic brain injury
- gene expression
- prefrontal cortex
- intensive care unit
- high resolution
- multiple sclerosis
- drug induced
- acute respiratory distress syndrome
- genome wide
- long noncoding rna
- oxidative stress
- extracorporeal membrane oxygenation
- aortic dissection