Disease areas:
  • nutrition and metabolism
Last updated:
Author(s):
Wenwen Gao, Lei Liu, Eunna Huh, Florence Gbahou, Erika Cecon, Masaya Oshima, Ludivine Houzé, Panagiotis Katsonis, Alan Hegron, Zhiran Fan, Guofei Hou, Guillaume Charpentier, Mathilde Boissel, Mehdi Derhourhi, Michel Marre, Beverley Balkau, Philippe Froguel, Raphael Scharfmann, Olivier Lichtarge, Julie Dam, Amélie Bonnefond, Jianfeng Liu, Ralf Jockers
Publish date:
14 September 2023
Journal:
Nature Metabolism
PubMed ID:
37709961

Abstract

The glucagon-like peptide 1 receptor (GLP1R) is a major drug target with several agonists being prescribed in individuals with type 2 diabetes and obesity1,2. The impact of genetic variability of GLP1R on receptor function and its association with metabolic traits are unclear with conflicting reports. Here, we show an unexpected diversity of phenotypes ranging from defective cell surface expression to complete or pathway-specific gain of function (GoF) and loss of function (LoF), after performing a functional profiling of 60 GLP1R variants across four signalling pathways. The defective insulin secretion of GLP1R LoF variants is rescued by allosteric GLP1R ligands or high concentrations of exendin-4/semaglutide in INS-1 823/3 cells. Genetic association studies in 200,000 participants from the UK Biobank show that impaired GLP1R cell surface expression contributes to poor glucose control and increased adiposity with increased glycated haemoglobin A1c and body mass index. This study defines impaired GLP1R cell surface expression as a risk factor for traits associated with type 2 diabetes and obesity and provides potential treatment options for GLP1R LoF variant carriers.

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