Glucose-dependent insulinotropic polypeptide regulates body weight and food intake via GABAergic neurons in mice

Author:

Liskiewicz ArkadiuszORCID,Khalil Ahmed,Liskiewicz Daniela,Novikoff Aaron,Grandl Gerald,Maity-Kumar Gandhari,Gutgesell Robert M.,Bakhti MostafaORCID,Bastidas-Ponce Aimée,Czarnecki OliverORCID,Makris Konstantinos,Lickert Heiko,Feuchtinger Annette,Tost Monica,Coupland CallumORCID,Ständer Lisa,Akindehin Seun,Prakash Sneha,Abrar Faiyaz,Castelino Russell L.ORCID,He Yantao,Knerr Patrick J.,Yang BinORCID,Hogendorf Wouter F. J.ORCID,Zhang Shiqi,Hofmann Susanna M.ORCID,Finan BrianORCID,DiMarchi Richard D.ORCID,Tschöp Matthias H.ORCID,Douros Jonathan D.,Müller Timo D.ORCID

Abstract

AbstractThe development of single-molecule co-agonists for the glucagon-like peptide-1 (GLP-1) receptor (GLP-1R) and glucose-dependent insulinotropic polypeptide (GIP) receptor (GIPR) is considered a breakthrough in the treatment of obesity and type 2 diabetes. But although GIPR–GLP-1R co-agonism decreases body weight with superior efficacy relative to GLP-1R agonism alone in preclinical1–3 and clinical studies4,5, the role of GIP in regulating energy metabolism remains enigmatic. Increasing evidence suggests that long-acting GIPR agonists act in the brain to decrease body weight through the inhibition of food intake3,6–8; however, the mechanisms and neuronal populations through which GIP affects metabolism remain to be identified. Here, we report that long-acting GIPR agonists and GIPR–GLP-1R co-agonists decrease body weight and food intake via inhibitory GABAergic neurons. We show that acyl-GIP decreases body weight and food intake in male diet-induced obese wild-type mice, but not in mice with deletion of Gipr in Vgat(also known as Slc32a1)-expressing GABAergic neurons (Vgat-Gipr knockout). Whereas the GIPR–GLP-1R co-agonist MAR709 leads, in male diet-induced obese wild-type mice, to greater weight loss and further inhibition of food intake relative to a pharmacokinetically matched acyl-GLP-1 control, this superiority over GLP-1 vanishes in Vgat-Gipr knockout mice. Our data demonstrate that long-acting GIPR agonists crucially depend on GIPR signaling in inhibitory GABAergic neurons to decrease body weight and food intake.

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Physiology (medical),Endocrinology, Diabetes and Metabolism,Internal Medicine

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