α-Melanocyte stimulating hormone promotes muscle glucose uptake via melanocortin 5 receptors


Autoria(s): Enriori, Pablo J.; Chen, Weiyi; Garcia-Rudaz, Maria C.; Grayson, Bernadette E.; Evans, Anne E.; Comstock, Sarah M.; Gebhardt, Ursel; Müller, Hermann L.; Reinehr, Thomas; Henry, Belinda A.; Brown, Russell D.; Bruce, Clinton R.; Simonds, Stephanie E.; Litwak, Sara A.; McGee, Sean L.; Luquet, Serge; Martinez, Sarah; Jastroch, Martin; Tschöp, Matthias H.; Watt, Matthew J.; Clarke, Iain J.; Roth, Christian L.; Grove, Kevin L.; Cowley, Michael A.
Data(s)

01/10/2016

Resumo

OBJECTIVE: Central melanocortin pathways are well-established regulators of energy balance. However, scant data exist about the role of systemic melanocortin peptides. We set out to determine if peripheral α-melanocyte stimulating hormone (α-MSH) plays a role in glucose homeostasis and tested the hypothesis that the pituitary is able to sense a physiological increase in circulating glucose and responds by secreting α-MSH. <br /><br />METHODS: We established glucose-stimulated α-MSH secretion using humans, non-human primates, and mouse models. Continuous α-MSH infusions were performed during glucose tolerance tests and hyperinsulinemic-euglycemic clamps to evaluate the systemic effect of α-MSH in glucose regulation. Complementary ex vivo and in vitro techniques were employed to delineate the direct action of α-MSH via the melanocortin 5 receptor (MC5R)-PKA axis in skeletal muscles. Combined treatment of non-selective/selective phosphodiesterase inhibitor and α-MSH was adopted to restore glucose tolerance in obese mice. <br /><br />RESULTS: Here we demonstrate that pituitary secretion of α-MSH is increased by glucose. Peripheral α-MSH increases temperature in skeletal muscles, acts directly on soleus and gastrocnemius muscles to significantly increase glucose uptake, and enhances whole-body glucose clearance via the activation of muscle MC5R and protein kinase A. These actions are absent in obese mice, accompanied by a blunting of α-MSH-induced cAMP levels in skeletal muscles of obese mice. Both selective and non-selective phosphodiesterase inhibition restores α-MSH induced skeletal muscle glucose uptake and improves glucose disposal in obese mice. <br /><br />CONCLUSION: These data describe a novel endocrine circuit that modulates glucose homeostasis by pituitary α-MSH, which increases muscle glucose uptake and thermogenesis through the activation of a MC5R-PKA-pathway, which is disrupted in obesity.

Identificador

http://hdl.handle.net/10536/DRO/DU:30085478

Idioma(s)

eng

Publicador

Elsevier

Relação

http://dro.deakin.edu.au/eserv/DU:30085478/bruce-amelanocyte-post-2016.pdf

http://dro.deakin.edu.au/eserv/DU:30085478/bruce-amelanocytestimulationg-2016.pdf

http://www.dx.doi.org/10.1016/j.molmet.2016.07.009

Direitos

2016, The Authors

Palavras-Chave #Glucose homeostasis #MC5R #PKA #Pituitary #Skeletal muscles #α-MSH
Tipo

Journal Article