Identification of a Thermogenic Target in the Dorsal Raphe Nucleus for Weight Management
Moura-Assis, A.; Plucinska, K.; Baleisyte, A.; David, D.; Pellegrino, K.; Parolari, L.; Shaked, P. T.; Page, K. J.; Douglas, D. W.; Carrol, T. S.; Grajales-Reyes, J. G.; Na, D.; Schiffer, H. H.; Chen, Y.; Sun, H.; Cohen, N.; Monenschein, H.; Barker, D. F.; Ortuno, M. J.; Renier, N.; Cohen, P.; Carlton, M.; Heintz, N.; Brice, N. L.; Friedman, J. M.; Schneeberger, M.
Show abstract
Obesity emerges from a complex interplay of factors, including imbalanced interoception, genetic predisposition, and environmental cues, ultimately disrupting body weight homeostasis1. While much research has concentrated on strategies to suppress appetite for sustained weight loss, insufficient attention has been given to counterregulatory mechanisms that promote energy expenditure. Here, we show that chronic inhibition of GABAergic neurons in the Dorsal Raphe Nucleus (DRNVGAT) reduces body weight in diet-induced obese (DIO) mice. In this study, molecular profiling and in-situ hybridization in rodent and human brains revealed that the constitutively activated orphan receptor GPR6 is selectively enriched in DRNVGAT neurons. We next developed and administered a potent and highly selective GPR6 inverse agonist, which significantly reduced weight gain in DIO mice by stimulating brown adipose tissue thermogenesis without affecting appetite. Altogether, this study transitions from transcriptomic profiling, high-throughput drug screening and metabolic phenotyping to successfully identify a novel candidate to treat obesity.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Non-canonical hepatic androgen receptor mediates glucagon sensitivity in female mice through the PGC1α/ERRα/mitochondria axis 96%
- Nausea-induced suppression of feeding is mediated by central amygdala Dlk1 expressing neurons 96%
- General Anesthesia Activates a Central Anxiolytic Center in the BNST 95%
Similar papers in this journal
Similar papers in this journal
"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.