کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
8308379 | 1538493 | 2018 | 10 صفحه PDF | دانلود رایگان |
عنوان انگلیسی مقاله ISI
An incretin-based tri-agonist promotes superior insulin secretion from murine pancreatic islets via PLC activation
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کلمات کلیدی
EpacVDCCsglucose-dependent insulinotropic polypeptide receptorGcgrTMHTRPMGIPRGLP-1RGIPPKCT2DGLP-1ECLPLCHBSSpKaFCSGPCRcAMP - cAMPG-protein coupled receptor - G-پروتئین همراه گیرندهLa3+ - La3 +TRPs - TRP هاSignaling cascade - آبشار سیگنالینگCyclic adenosine monophosphate - آدنوزین مونوفسفات Cyclicadenylyl cyclase - آدنیلات سیکلاز، آدنیلیل سیکلازInsulin secretion - ترشح انسولینPancreatic islets - جزایر پانکراسextracellular loop - حلقه خارج سلولیType 2 diabetes - دیابت نوع 2fetal calf serum - سرم گوساله جنینphospholipase C - فسفولیپاز Ctransmembrane helix - مارپیچ فرابنفشHank's buffered salt solution - محلول نمک بافر هانکtransient receptor potential melastatin - میلزین بالقوه گیرنده گذراG proteins - پروتئین GExchange protein directly activated by cAMP - پروتئین تبادل شده به طور مستقیم توسط cAMP فعال می شودprotein kinase A - پروتئین کیناز AProtein kinase C - پروتئین کیناز سیglucagon-like peptide-1 - پپتید 1-گلوکاگون-مانندVoltage-dependent Ca2+ channels - کانال Ca2 + وابسته به ولتاژTRP channels - کانال های TRPTransient receptor potential channels - کانال های بالقوه گیرنده گذراglucose-dependent insulinotropic polypeptide - گلیکول وابسته به پلی پپتید انسولینوتروپیکglucagon-like peptide-1 receptor - گیرنده پپتید-1 مانند گلوکاگونGlucagon receptor - گیرنده گلوکاگون
موضوعات مرتبط
علوم زیستی و بیوفناوری
بیوشیمی، ژنتیک و زیست شناسی مولکولی
زیست شیمی
پیش نمایش صفحه اول مقاله
چکیده انگلیسی
Recently, a unimolecular tri-agonist with activity at glucagon-like peptide 1 receptor (GLP-1R), glucose dependent insulinotropic receptor, and the glucagon receptor was reported to improve glycemic control in mice. Here, we defined the underlying molecular mechanisms of enhanced insulin secretion in murine pancreatic islets for a specific tri-agonist. The tri-agonist induced an increase in insulin secretion from murine islets compared to the respective mono-agonists. GLP-1R mainly signals via activation of the Gαs pathway, but inhibition of protein kinase A (H89) and exchange protein activation by cAMP (EPAC) (ESI-09) could not completely block insulin release induced by tri-agonist. Electrophysiological observations identified a strong increase of intracellular Ca2+ concentration and whole-cell currents induced by tri-agonist via transient receptor potential channels (TRPs). Although, EPAC activation mobilizes intracellular Ca2+ via TRPs, the TRPs blockers (La3+ and Ruthenium Red) had a larger inhibitory impact than ESI-09 on tri-agonist stimulatory effects. To test for other potential mechanisms, we blocked PLC activity (U73122) which reduced the superior effect of tri-agonist to induce insulin secretion, and partially inhibited the induced Ca2+ influx. This result suggests that the relative effect of tri-agonist on insulin secretion caused by GLP-1R agonism is mediated mainly via Gαs signaling and partially by activation of PLC. Therefore, the large portion of the increased intracellular Ca2+ concentration and the enhanced whole-cell currents induced by tri-agonist might be attributable to TRP channel activation resulting from signaling through multiple G-proteins. Here, we suggest that broadened intracellular signaling may account for the superior in vivo effects observed with tri-agonism.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Cellular Signalling - Volume 51, November 2018, Pages 13-22
Journal: Cellular Signalling - Volume 51, November 2018, Pages 13-22
نویسندگان
Noushafarin Khajavi, Brian Finan, Oliver Kluth, Timo D. Müller, Stefan Mergler, Angela Schulz, Gunnar Kleinau, Patrick Scheerer, Annette Schürmann, Thomas Gudermann, Matthias H. Tschöp, Heiko Krude, Richard D. DiMarchi, Heike Biebermann,