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Glucagon-like peptide-1 receptor internalisation controls spatiotemporal signalling mediated by biased agonists
Madeleine M Fletcher1, Michelle L Halls1, Peishen Zhao1
1Drug Discovery Biology, Monash Institute of Pharmaceutical Sciences, Faculty of Pharmacy and Pharmaceutical Sciences, Monash University, Parkville, Melbourne, Victoria 3052, Australia.
Abstract:
The glucagon-like peptide-1 receptor (GLP-1R) is a major therapeutic target in the treatment of type 2 diabetes due to its roles in regulating blood glucose and in promoting weight loss. Like many GPCRs, it is pleiotropically coupled, can be activated by multiple ligands and is subject to biased agonism. The GLP-1R undergoes agonist mediated receptor internalisation that may be associated with spatiotemporal control of signalling and biased agonism, although to date, this has not been extensively explored. Here, we investigate GLP-1R trafficking and its importance with regard to signalling, including the localisation of key signalling molecules, mediated by biased peptide agonists that are either endogenous GLP-1R ligands or are used clinically. Each of the agonists promoted receptor internalisation through a dynamin and caveolae dependent mechanism and traffic the receptor to both degradative and recycling pathways. This internalisation is important for signalling, with cAMP and ERK1/2 phoshorylation (pERK1/2) generated by both plasma membrane localised and internalised receptors. Further assessment of pERK1/2 revealed that all peptides induced nuclear ERK activity, but ligands, liraglutide and oxyntomodulin that are biased towards pERK1/2 relative to cAMP (when compared to GLP-1 and exendin-4), also stimulated pERK1/2 activity in the cytosol. This compartmentalisation of ERK1/2 signalling was reliant on receptor internalisation, with restriction of receptor localisation to the plasma membrane limiting ERK1/2 signalling to the cytosol. Thus, this study implicates a role of receptor internalisation in spatiotemporal control of ERK1/2 signalling that may contribute to GLP-1R biased agonism.
Insights
Glucagon-like peptide-1 receptor (GLP-1R) internalisation controls signalling location, influencing biased agonism. Receptor trafficking impacts therapeutic potential for type 2 diabetes and weight loss treatments.
Area of Science:
- Pharmacology
- Cell Biology
- Endocrinology
Background:
- The glucagon-like peptide-1 receptor (GLP-1R) is a key target for type 2 diabetes and obesity treatments.
- GLP-1R, a GPCR, exhibits pleiotropic coupling, multiple ligand activation, and biased agonism.
- Agonist-induced GLP-1R internalisation may influence signalling spatiotemporal control and biased agonism.
Purpose of the Study:
- To investigate GLP-1R trafficking and its role in signalling.
- To explore how biased peptide agonists affect GLP-1R localisation and signalling pathways.
- To understand the contribution of receptor internalisation to biased GLP-1R agonism.
Main Methods:
- Studied GLP-1R trafficking using various peptide agonists (endogenous and clinical).
- Assessed receptor internalisation mechanisms (dynamin, caveolae) and trafficking pathways (degradative, recycling).
- Measured signalling molecules cAMP and phosphorylated ERK1/2 (pERK1/2) in relation to receptor localisation.
Main Results:
- All tested agonists induced GLP-1R internalisation via dynamin and caveolae-dependent pathways.
- Internalised receptors contribute to both cAMP and pERK1/2 signalling.
- Biased agonists (liraglutide, oxyntomodulin) showed distinct pERK1/2 compartmentalisation (cytosolic and nuclear) dependent on internalisation.
Conclusions:
- GLP-1R internalisation is crucial for signalling, including cAMP and pERK1/2 generation.
- Receptor trafficking contributes to the spatiotemporal control of ERK1/2 signalling.
- Internalisation-dependent signalling compartmentalisation may underlie GLP-1R biased agonism, impacting therapeutic strategies.
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