Rapid nongenomic estrogen signaling controls alcohol drinking behavior
Zallar, L. J.; Rivera-Irizarry, J. K.; Hamor, P. U.; Pigulevskiy, I.; Liu, D.; Welday, J. P.; Rico Rozo, A.-S.; Bender, R.; Asfouri, J.; Skelly, M. J.; Fecteau, K. M.; Hadley, C. K.; Levine, O. B.; Mehanna, H.; Nelson, S.; Miller, J.; Ghazal, P.; Bellotti, P.; Erikson, D. W.; Geri, J.; Pleil, K. E.
Show abstract
Ovarian-derived estrogen is a key modulator of numerous physiological processes via genomic and nongenomic mechanisms, including signaling non-canonically at membrane-associated estrogen receptors in the brain to rapidly regulate neuronal function. However, the mechanisms mediating estrogen regulation of behaviors such as alcohol consumption remain unclear. Early alcohol drinking confers greater risk for alcohol use disorder in women than men, and binge alcohol drinking is correlated with high circulating estrogen levels, but a causal role for estrogen signaling in driving alcohol drinking in gonadally-intact animals has not been established. We found that female mice displayed greater binge alcohol drinking and reduced avoidance behavior when circulating estrogen was high during the proestrus phase of the estrous cycle than when it was low, contributing to sex differences in these behaviors. The pro-drinking, but not anxiolytic, effect of high endogenous estrogen state occurred via rapid estrogen signaling at membrane-associated estrogen receptor alpha in the bed nucleus of the stria terminalis, which promoted synaptic excitation of corticotropin-releasing factor neurons and facilitated their activity during alcohol drinking behavior. This study is the first to demonstrate a rapid, nongenomic signaling mechanism for ovarian-derived estrogen signaling in the brain controlling behavior in gonadally intact females, and it establishes a causal role for estrogen in an intact hormonal context for driving alcohol consumption that contributes to known sex differences in this behavior.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Ventral hippocampus neurons encode meal-related memory 96%
- Distinct ventral tegmental area neuronal ensembles are indispensable for reward-driven approach and stress-driven avoidance behaviors 96%
- Nucleus accumbens D1- and D2-expressing neurons control the balance between feeding and activity-mediated energy expenditure 96%
Similar papers in this journal
- Glutathione in the nucleus accumbens regulates motivation to exert reward-incentivized effort 96%
- Metabolic-sensing in AgRP neurons integrates homeostatic state with dopamine signalling in the striatum 95%
- Adolescent neurostimulation of dopamine circuit reverses genetic deficits in frontal cortex function 95%
Similar papers in this journal
Similar papers in this journal
- Central amygdalar PKCδ neurons mediate fentanyl withdrawal 96%
- Transcriptomic signatures of sex-specific nicotine sensitization and imprinting of self-administration in rats inform GWAS findings on human addiction phenotypes 96%
- Identification of a stress-sensitive endogenous opioid-containing neuronal population in the paranigral ventral tegmental area. 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.