Short-Chain Fatty Acids Stimulate Glucagon-Like Peptide-1 Secretion via the G-Protein–Coupled Receptor FFAR2
Короткоцепочечные жирные кислоты стимулируют секрецию глюкагоноподобного пептида-1 через G-белок-связанный рецептор FFAR2
2011-12-21
SCID: 54.1/4z4wcxfr
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FFAR2 (GPR43)glucagon-like peptide-1glucose tolerancegut microbiomeshort-chain fatty acids
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Abstract (AI)
Interest in how the gut microbiome can influence the metabolic state of the host has recently heightened. One postulated link is bacterial fermentation of "indigestible" prebiotics to short-chain fatty acids (SCFAs), which in turn modulate the release of gut hormones controlling insulin release and appetite. We show here that SCFAs trigger secretion of the incretin hormone glucagon-like peptide (GLP)-1 from mixed colonic cultures in vitro. Quantitative PCR revealed enriched expression of the SCFA receptors ffar2 (grp43) and ffar3 (gpr41) in GLP-1-secreting L cells, and consistent with the reported coupling of GPR43 to Gq signaling pathways, SCFAs raised cytosolic Ca2+ in L cells in primary culture. Mice lacking ffar2 or ffar3 exhibited reduced SCFA-triggered GLP-1 secretion in vitro and in vivo and a parallel impairment of glucose tolerance. These results highlight SCFAs and their receptors as potential targets for the treatment of diabetes.
Key Findings
1
Loss of either SCFA receptor is accompanied by impaired glucose tolerance, identifying SCFA signaling as a potential diabetes-treatment target.
2
Mice lacking FFAR2 or FFAR3 show reduced SCFA-induced GLP-1 secretion both in vitro and in vivo.
3
SCFAs increase cytosolic calcium in primary L cells, consistent with FFAR2-mediated Gq signaling.
4
Short-chain fatty acids stimulate GLP-1 secretion from mixed colonic cultures in vitro.
5
The SCFA receptors FFAR2/GPR43 and FFAR3/GPR41 are enriched in GLP-1-secreting intestinal L cells.
Research Object
GLP-1-secreting intestinal L cells and their SCFA receptors FFAR2/GPR43 and FFAR3/GPR41
Research Subject
SCFA-induced GLP-1 secretion and its receptor-mediated signaling, including cytosolic Ca2+ responses and effects on glucose tolerance
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2011-12-21
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