Language
English
Publication Date
4-29-2024
Journal
bioRxiv
DOI
10.1101/2024.04.26.591360
PMID
38746314
PMCID
PMC11092489
PubMedCentral® Posted Date
4-29-2024
PubMedCentral® Full Text Version
Author MSS
Abstract
Obesity is a growing global health epidemic with limited effective therapeutics. Serotonin (5-HT) is one major neurotransmitter which remains an excellent target for new weight-loss therapies, but there remains a gap in knowledge on the mechanisms involved in 5-HT produced in the dorsal Raphe nucleus (DRN) and its involvement in meal initiation. Using a closed-loop optogenetic feeding paradigm, we showed that the 5-HTDRN→arcuate nucleus (ARH) circuit plays an important role in regulating meal initiation. Incorporating electrophysiology and ChannelRhodopsin-2-Assisted Circuit Mapping, we demonstrated that 5-HTDRN neurons receive inhibitory input partially from GABAergic neurons in the DRN, and the 5-HT response to GABAergic inputs can be enhanced by hunger. Additionally, deletion of the GABAA receptor subunit in 5-HT neurons inhibits meal initiation with no effect on the satiation process. Finally, we identified the instrumental role of dopaminergic inputs via dopamine receptor D2 in 5-HTDRN neurons in enhancing the response to GABA-induced feeding. Thus, our results indicate that 5-HTDRN neurons are inhibited by synergistic inhibitory actions of GABA and dopamine, which allows for the initiation of a meal.
Keywords
5-HT, Meal regulation, Feeding Behavior, Dopamine, DRD2, GABA
Published Open-Access
yes
Recommended Citation
Conde, Kristine M; Wong, HueyZhong; Fang, Shuzheng; et al., "5-HT Neurons Integrate GABA and Dopamine Inputs to Regulate Meal Initiation" (2024). Children’s Nutrition Research Center Staff Publications. 433.
https://digitalcommons.library.tmc.edu/staff_pub/433
Included in
Biochemical Phenomena, Metabolism, and Nutrition Commons, Dietetics and Clinical Nutrition Commons, Endocrinology, Diabetes, and Metabolism Commons, Nutrition Commons