GLPwatch

Molecular Characterisation of Small Molecule Agonists Effect on the Human Glucagon Like Peptide-1 Receptor Internalisation.

PLoS One · 2016

Last updated 2026-05-28

In lab tests, two small molecule drugs (compounds 2 and B) triggered blood sugar control signals in cells by increasing cAMP production, similar to natural GLP-1. However, unlike natural GLP-1, these compounds did not cause calcium buildup, ERK activation, or receptor internalization. Mutations that blocked natural GLP-1’s effects also reduced these compounds’ effects, suggesting they work through the same pathway.

AI summary of the abstract below.

JournalPLoS One, 2016
Citations13
Relative citation ratio0.49
NIH percentile29
Molecules
Conditions studied Type 2 Diabetes, Obesity

Abstract

The glucagon-like peptide receptor (GLP-1R), which is a G-protein coupled receptor (GPCR), signals through both Gαs and Gαq coupled pathways and ERK phosphorylation to stimulate insulin secretion. The aim of this study was to determine molecular details of the effect of small molecule agonists, compounds 2 and B, on GLP-1R mediated cAMP production, intracellular Ca2+ accumulation, ERK phosphorylation and its internalisation. In human GLP-1R (hGLP-1R) expressing cells, compounds 2 and B induced cAMP production but caused no intracellular Ca2+ accumulation, ERK phosphorylation or hGLP-1R internalisation. GLP-1 antagonists Ex(9-39) and JANT-4 and the orthosteric binding site mutation (V36A) in hGLP-1R failed to inhibit compounds 2 and B induced cAMP production, confirming that their binding site distinct from the GLP-1 binding site on GLP-1R. However, K334A mutation of hGLP-1R, which affects Gαs coupling, inhibited GLP-1 as well as compounds 2 and B induced cAMP production, indicating that GLP-1, compounds 2 and B binding induce similar conformational changes in the GLP-1R for Gαs coupling. Additionally, compound 2 or B binding to the hGLP-1R had significantly reduced GLP-1 induced intracellular Ca2+ accumulation, ERK phosphorylation and hGLP-1R internalisation. This study illustrates pharmacology of differential activation of GLP-1R by GLP-1 and compounds 2 and B.

Verbatim abstract via PubMed 27100083 ↗