PMID-sentid Pub_year Sent_text comp_official_name comp_offsetprotein_name organism prot_offset 22820510-1 2012 AIMS/HYPOTHESIS: Activation of the G protein-coupled receptor (GPR)40 by long-chain fatty acids potentiates glucose-stimulated insulin secretion (GSIS) from pancreatic beta cells, and GPR40 agonists are in clinical development for type 2 diabetes therapy. long-chain fatty acids 73-95 free fatty acid receptor 1 Mus musculus 35-69 22820510-1 2012 AIMS/HYPOTHESIS: Activation of the G protein-coupled receptor (GPR)40 by long-chain fatty acids potentiates glucose-stimulated insulin secretion (GSIS) from pancreatic beta cells, and GPR40 agonists are in clinical development for type 2 diabetes therapy. Glucose 108-115 free fatty acid receptor 1 Mus musculus 35-69 22820510-3 2012 This study aimed to determine the mechanisms of GPR40-dependent potentiation of GSIS by fatty acids. Fatty Acids 88-99 free fatty acid receptor 1 Mus musculus 48-53 22820510-9 2012 Exogenous DAG potentiates GSIS in both WT and Gpr40 (-/-) islets. Diglycerides 10-13 free fatty acid receptor 1 Mus musculus 46-51 22820510-10 2012 Oleate induces PKD phosphorylation at residues Ser-744/748 and Ser-916 in WT but not Gpr40 (-/-) islets. Oleic Acid 0-6 protein kinase D1 Mus musculus 15-18 22820510-10 2012 Oleate induces PKD phosphorylation at residues Ser-744/748 and Ser-916 in WT but not Gpr40 (-/-) islets. Serine 47-50 protein kinase D1 Mus musculus 15-18 22820510-12 2012 CONCLUSIONS/INTERPRETATION: We conclude that the signalling cascade downstream of GPR40 activation by fatty acids involves activation of PKD1, F-actin depolymerisation and potentiation of second-phase insulin secretion. Fatty Acids 102-113 free fatty acid receptor 1 Mus musculus 82-87 22820510-12 2012 CONCLUSIONS/INTERPRETATION: We conclude that the signalling cascade downstream of GPR40 activation by fatty acids involves activation of PKD1, F-actin depolymerisation and potentiation of second-phase insulin secretion. Fatty Acids 102-113 polycystin 1, transient receptor potential channel interacting Mus musculus 137-141