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Chronic UCN2 treatment desensitizes CRHR2 and improves insulin sensitivity

Urocortin 2 (UCN2) acts as a ligand for the G protein-coupled receptor corticotropin-releasing hormone receptor 2 (CRHR2). UCN2 has been reported to improve or worsen insulin sensitivity and glucose tolerance in vivo. Here we show that acute dosing of UCN2 induces systemic insulin resistance in male...

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Detalles Bibliográficos
Autores principales: Flaherty, Stephen E., Bezy, Olivier, Zheng, Wei, Yan, Dong, Li, Xiangping, Jagarlapudi, Srinath, Albuquerque, Bina, Esquejo, Ryan M., Peloquin, Matthew, Semache, Meriem, Mancini, Arturo, Kang, Liya, Drujan, Doreen, Breitkopf, Susanne B., Griffin, John D., Jean Beltran, Pierre M., Xue, Liang, Stansfield, John, Pashos, Evanthia, Shakey, Quazi, Pehmøller, Christian, Monetti, Mara, Birnbaum, Morris J., Fortin, Jean-Philippe, Wu, Zhidan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10319809/
https://www.ncbi.nlm.nih.gov/pubmed/37402735
http://dx.doi.org/10.1038/s41467-023-39597-w
Descripción
Sumario:Urocortin 2 (UCN2) acts as a ligand for the G protein-coupled receptor corticotropin-releasing hormone receptor 2 (CRHR2). UCN2 has been reported to improve or worsen insulin sensitivity and glucose tolerance in vivo. Here we show that acute dosing of UCN2 induces systemic insulin resistance in male mice and skeletal muscle. Inversely, chronic elevation of UCN2 by injection with adenovirus encoding UCN2 resolves metabolic complications, improving glucose tolerance. CRHR2 recruits Gs in response to low concentrations of UCN2, as well as Gi and β-Arrestin at high concentrations of UCN2. Pre-treating cells and skeletal muscle ex vivo with UCN2 leads to internalization of CRHR2, dampened ligand-dependent increases in cAMP, and blunted reductions in insulin signaling. These results provide mechanistic insights into how UCN2 regulates insulin sensitivity and glucose metabolism in skeletal muscle and in vivo. Importantly, a working model was derived from these results that unifies the contradictory metabolic effects of UCN2.