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SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells

Measurements of membrane capacitance were applied to dissect the cellular mechanisms underlying PKA-dependent and -independent stimulation of insulin secretion by cyclic AMP. Whereas the PKA-independent (Rp-cAMPS–insensitive) component correlated with a rapid increase in membrane capacitance of ∼80...

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Autores principales: Eliasson, Lena, Ma, Xiaosong, Renström, Erik, Barg, Sebastian, Berggren, Per-Olof, Galvanovskis, Juris, Gromada, Jesper, Jing, Xingjun, Lundquist, Ingmar, Salehi, Albert, Sewing, Sabine, Rorsman, Patrik
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2003
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2217330/
https://www.ncbi.nlm.nih.gov/pubmed/12601083
http://dx.doi.org/10.1085/jgp.20028707
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author Eliasson, Lena
Ma, Xiaosong
Renström, Erik
Barg, Sebastian
Berggren, Per-Olof
Galvanovskis, Juris
Gromada, Jesper
Jing, Xingjun
Lundquist, Ingmar
Salehi, Albert
Sewing, Sabine
Rorsman, Patrik
author_facet Eliasson, Lena
Ma, Xiaosong
Renström, Erik
Barg, Sebastian
Berggren, Per-Olof
Galvanovskis, Juris
Gromada, Jesper
Jing, Xingjun
Lundquist, Ingmar
Salehi, Albert
Sewing, Sabine
Rorsman, Patrik
author_sort Eliasson, Lena
collection PubMed
description Measurements of membrane capacitance were applied to dissect the cellular mechanisms underlying PKA-dependent and -independent stimulation of insulin secretion by cyclic AMP. Whereas the PKA-independent (Rp-cAMPS–insensitive) component correlated with a rapid increase in membrane capacitance of ∼80 fF that plateaued within ∼200 ms, the PKA-dependent component became prominent during depolarizations >450 ms. The PKA-dependent and -independent components of cAMP-stimulated exocytosis differed with regard to cAMP concentration dependence; the K (d) values were 6 and 29 μM for the PKA-dependent and -independent mechanisms, respectively. The ability of cAMP to elicit exocytosis independently of PKA activation was mimicked by the selective cAMP-GEFII agonist 8CPT-2Me-cAMP. Moreover, treatment of B-cells with antisense oligodeoxynucleotides against cAMP-GEFII resulted in partial (50%) suppression of PKA-independent exocytosis. Surprisingly, B-cells in islets isolated from SUR1-deficient mice (SUR1(−/−) mice) lacked the PKA-independent component of exocytosis. Measurements of insulin release in response to GLP-1 stimulation in isolated islets from SUR1(−/−) mice confirmed the complete loss of the PKA-independent component. This was not attributable to a reduced capacity of GLP-1 to elevate intracellular cAMP but instead associated with the inability of cAMP to stimulate influx of Cl(−) into the granules, a step important for granule priming. We conclude that the role of SUR1 in the B cell extends beyond being a subunit of the plasma membrane K(ATP)-channel and that it also plays an unexpected but important role in the cAMP-dependent regulation of Ca(2+)-induced exocytosis.
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spelling pubmed-22173302008-04-16 SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells Eliasson, Lena Ma, Xiaosong Renström, Erik Barg, Sebastian Berggren, Per-Olof Galvanovskis, Juris Gromada, Jesper Jing, Xingjun Lundquist, Ingmar Salehi, Albert Sewing, Sabine Rorsman, Patrik J Gen Physiol Article Measurements of membrane capacitance were applied to dissect the cellular mechanisms underlying PKA-dependent and -independent stimulation of insulin secretion by cyclic AMP. Whereas the PKA-independent (Rp-cAMPS–insensitive) component correlated with a rapid increase in membrane capacitance of ∼80 fF that plateaued within ∼200 ms, the PKA-dependent component became prominent during depolarizations >450 ms. The PKA-dependent and -independent components of cAMP-stimulated exocytosis differed with regard to cAMP concentration dependence; the K (d) values were 6 and 29 μM for the PKA-dependent and -independent mechanisms, respectively. The ability of cAMP to elicit exocytosis independently of PKA activation was mimicked by the selective cAMP-GEFII agonist 8CPT-2Me-cAMP. Moreover, treatment of B-cells with antisense oligodeoxynucleotides against cAMP-GEFII resulted in partial (50%) suppression of PKA-independent exocytosis. Surprisingly, B-cells in islets isolated from SUR1-deficient mice (SUR1(−/−) mice) lacked the PKA-independent component of exocytosis. Measurements of insulin release in response to GLP-1 stimulation in isolated islets from SUR1(−/−) mice confirmed the complete loss of the PKA-independent component. This was not attributable to a reduced capacity of GLP-1 to elevate intracellular cAMP but instead associated with the inability of cAMP to stimulate influx of Cl(−) into the granules, a step important for granule priming. We conclude that the role of SUR1 in the B cell extends beyond being a subunit of the plasma membrane K(ATP)-channel and that it also plays an unexpected but important role in the cAMP-dependent regulation of Ca(2+)-induced exocytosis. The Rockefeller University Press 2003-03 /pmc/articles/PMC2217330/ /pubmed/12601083 http://dx.doi.org/10.1085/jgp.20028707 Text en Copyright © 2003, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Eliasson, Lena
Ma, Xiaosong
Renström, Erik
Barg, Sebastian
Berggren, Per-Olof
Galvanovskis, Juris
Gromada, Jesper
Jing, Xingjun
Lundquist, Ingmar
Salehi, Albert
Sewing, Sabine
Rorsman, Patrik
SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells
title SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells
title_full SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells
title_fullStr SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells
title_full_unstemmed SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells
title_short SUR1 Regulates PKA-independent cAMP-induced Granule Priming in Mouse Pancreatic B-cells
title_sort sur1 regulates pka-independent camp-induced granule priming in mouse pancreatic b-cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2217330/
https://www.ncbi.nlm.nih.gov/pubmed/12601083
http://dx.doi.org/10.1085/jgp.20028707
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