Disease areas:
  • nutrition and metabolism
Last updated:
Author(s):
Sarah Meulebrouck, Judith Merrheim, Gurvan Queniat, Cyril Bourouh, Mehdi Derhourhi, Mathilde Boissel, Xiaoyan Yi, Alaa Badreddine, Raphaël Boutry, Audrey Leloire, Bénédicte Toussaint, Souhila Amanzougarene, Emmanuel Vaillant, Emmanuelle Durand, Hélène Loiselle, Marlène Huyvaert, Aurélie Dechaume, Victoria Scherrer, Piero Marchetti, Beverley Balkau, Guillaume Charpentier, Sylvia Franc, Michel Marre, Ronan Roussel, Raphaël Scharfmann, Miriam Cnop, Mickaël Canouil, Morgane Baron, Philippe Froguel, Amélie Bonnefond
Publish date:
5 August 2024
Journal:
Nature Communications
PubMed ID:
39103322

Abstract

Functional genetics has identified drug targets for metabolic disorders. Opioid use impacts metabolic homeostasis, although mechanisms remain elusive. Here, we explore the OPRD1 gene (encoding delta opioid receptor, DOP) to understand its impact on type 2 diabetes. Large-scale sequencing of OPRD1 and in vitro analysis reveal that loss-of-function variants are associated with higher adiposity and lower hyperglycemia risk, whereas gain-of-function variants are associated with lower adiposity and higher type 2 diabetes risk. These findings align with studies of opium addicts. OPRD1 is expressed in human islets and beta cells, with decreased expression under type 2 diabetes conditions. DOP inhibition by an antagonist enhances insulin secretion from human beta cells and islets. RNA-sequencing identifies pathways regulated by DOP antagonism, including nerve growth factor, circadian clock, and nuclear receptor pathways. Our study highlights DOP as a key player between opioids and metabolic homeostasis, suggesting its potential as a therapeutic target for type 2 diabetes.

Related projects

Aims: In this proposal, based on our data in a French population, we aim to confirm in the UK Biobank association signals between specific DNA…

Institution:
INSERM, France

All projects