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Ghrelin Attenuates cAMP-PKA Signaling to Evoke Insulinostatic Cascade in Islet β-Cells

OBJECTIVE: Ghrelin reportedly restricts insulin release in islet β-cells via the Gα(i2) subtype of G-proteins and thereby regulates glucose homeostasis. This study explored whether ghrelin regulates cAMP signaling and whether this regulation induces insulinostatic cascade in islet β-cells. RESEARCH...

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Autores principales: Dezaki, Katsuya, Damdindorj, Boldbaatar, Sone, Hideyuki, Dyachok, Oleg, Tengholm, Anders, Gylfe, Erik, Kurashina, Tomoyuki, Yoshida, Masashi, Kakei, Masafumi, Yada, Toshihiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3161328/
https://www.ncbi.nlm.nih.gov/pubmed/21788571
http://dx.doi.org/10.2337/db11-0368
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author Dezaki, Katsuya
Damdindorj, Boldbaatar
Sone, Hideyuki
Dyachok, Oleg
Tengholm, Anders
Gylfe, Erik
Kurashina, Tomoyuki
Yoshida, Masashi
Kakei, Masafumi
Yada, Toshihiko
author_facet Dezaki, Katsuya
Damdindorj, Boldbaatar
Sone, Hideyuki
Dyachok, Oleg
Tengholm, Anders
Gylfe, Erik
Kurashina, Tomoyuki
Yoshida, Masashi
Kakei, Masafumi
Yada, Toshihiko
author_sort Dezaki, Katsuya
collection PubMed
description OBJECTIVE: Ghrelin reportedly restricts insulin release in islet β-cells via the Gα(i2) subtype of G-proteins and thereby regulates glucose homeostasis. This study explored whether ghrelin regulates cAMP signaling and whether this regulation induces insulinostatic cascade in islet β-cells. RESEARCH DESIGN AND METHODS: Insulin release was measured in rat perfused pancreas and isolated islets and cAMP production in isolated islets. Cytosolic cAMP concentrations ([cAMP](i)) were monitored in mouse MIN6 cells using evanescent-wave fluorescence imaging. In rat single β-cells, cytosolic protein kinase-A activity ([PKA](i)) and Ca(2+) concentration ([Ca(2+)](i)) were measured by DR-II and fura-2 microfluorometry, respectively, and whole cell currents by patch-clamp technique. RESULTS: Ghrelin suppressed glucose (8.3 mmol/L)-induced insulin release in rat perfused pancreas and isolated islets, and these effects of ghrelin were blunted in the presence of cAMP analogs or adenylate cyclase inhibitor. Glucose-induced cAMP production in isolated islets was attenuated by ghrelin and enhanced by ghrelin receptor antagonist and anti-ghrelin antiserum, which counteract endogenous islet-derived ghrelin. Ghrelin inhibited the glucose-induced [cAMP](i) elevation and [PKA](i) activation in MIN6 and rat β-cells, respectively. Furthermore, ghrelin potentiated voltage-dependent K(+) (Kv) channel currents without altering Ca(2+) channel currents and attenuated glucose-induced [Ca(2+)](i) increases in rat β-cells in a PKA-dependent manner. CONCLUSIONS: Ghrelin directly interacts with islet β-cells to attenuate glucose-induced cAMP production and PKA activation, which lead to activation of Kv channels and suppression of glucose-induced [Ca(2+)](i) increase and insulin release.
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spelling pubmed-31613282012-09-01 Ghrelin Attenuates cAMP-PKA Signaling to Evoke Insulinostatic Cascade in Islet β-Cells Dezaki, Katsuya Damdindorj, Boldbaatar Sone, Hideyuki Dyachok, Oleg Tengholm, Anders Gylfe, Erik Kurashina, Tomoyuki Yoshida, Masashi Kakei, Masafumi Yada, Toshihiko Diabetes Islet Studies OBJECTIVE: Ghrelin reportedly restricts insulin release in islet β-cells via the Gα(i2) subtype of G-proteins and thereby regulates glucose homeostasis. This study explored whether ghrelin regulates cAMP signaling and whether this regulation induces insulinostatic cascade in islet β-cells. RESEARCH DESIGN AND METHODS: Insulin release was measured in rat perfused pancreas and isolated islets and cAMP production in isolated islets. Cytosolic cAMP concentrations ([cAMP](i)) were monitored in mouse MIN6 cells using evanescent-wave fluorescence imaging. In rat single β-cells, cytosolic protein kinase-A activity ([PKA](i)) and Ca(2+) concentration ([Ca(2+)](i)) were measured by DR-II and fura-2 microfluorometry, respectively, and whole cell currents by patch-clamp technique. RESULTS: Ghrelin suppressed glucose (8.3 mmol/L)-induced insulin release in rat perfused pancreas and isolated islets, and these effects of ghrelin were blunted in the presence of cAMP analogs or adenylate cyclase inhibitor. Glucose-induced cAMP production in isolated islets was attenuated by ghrelin and enhanced by ghrelin receptor antagonist and anti-ghrelin antiserum, which counteract endogenous islet-derived ghrelin. Ghrelin inhibited the glucose-induced [cAMP](i) elevation and [PKA](i) activation in MIN6 and rat β-cells, respectively. Furthermore, ghrelin potentiated voltage-dependent K(+) (Kv) channel currents without altering Ca(2+) channel currents and attenuated glucose-induced [Ca(2+)](i) increases in rat β-cells in a PKA-dependent manner. CONCLUSIONS: Ghrelin directly interacts with islet β-cells to attenuate glucose-induced cAMP production and PKA activation, which lead to activation of Kv channels and suppression of glucose-induced [Ca(2+)](i) increase and insulin release. American Diabetes Association 2011-09 2011-08-20 /pmc/articles/PMC3161328/ /pubmed/21788571 http://dx.doi.org/10.2337/db11-0368 Text en © 2011 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Islet Studies
Dezaki, Katsuya
Damdindorj, Boldbaatar
Sone, Hideyuki
Dyachok, Oleg
Tengholm, Anders
Gylfe, Erik
Kurashina, Tomoyuki
Yoshida, Masashi
Kakei, Masafumi
Yada, Toshihiko
Ghrelin Attenuates cAMP-PKA Signaling to Evoke Insulinostatic Cascade in Islet β-Cells
title Ghrelin Attenuates cAMP-PKA Signaling to Evoke Insulinostatic Cascade in Islet β-Cells
title_full Ghrelin Attenuates cAMP-PKA Signaling to Evoke Insulinostatic Cascade in Islet β-Cells
title_fullStr Ghrelin Attenuates cAMP-PKA Signaling to Evoke Insulinostatic Cascade in Islet β-Cells
title_full_unstemmed Ghrelin Attenuates cAMP-PKA Signaling to Evoke Insulinostatic Cascade in Islet β-Cells
title_short Ghrelin Attenuates cAMP-PKA Signaling to Evoke Insulinostatic Cascade in Islet β-Cells
title_sort ghrelin attenuates camp-pka signaling to evoke insulinostatic cascade in islet β-cells
topic Islet Studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3161328/
https://www.ncbi.nlm.nih.gov/pubmed/21788571
http://dx.doi.org/10.2337/db11-0368
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