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The Mitochondrial Na(+)/Ca(2+) Exchanger Upregulates Glucose Dependent Ca(2+) Signalling Linked to Insulin Secretion

Mitochondria mediate dual metabolic and Ca(2+) shuttling activities. While the former is required for Ca(2+) signalling linked to insulin secretion, the role of the latter in β cell function has not been well understood, primarily because the molecular identity of the mitochondrial Ca(2+) transporte...

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Autores principales: Nita, Iulia I., Hershfinkel, Michal, Fishman, Daniel, Ozeri, Eyal, Rutter, Guy A., Sensi, Stefano L., Khananshvili, Daniel, Lewis, Eli C., Sekler, Israel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3466326/
https://www.ncbi.nlm.nih.gov/pubmed/23056385
http://dx.doi.org/10.1371/journal.pone.0046649
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author Nita, Iulia I.
Hershfinkel, Michal
Fishman, Daniel
Ozeri, Eyal
Rutter, Guy A.
Sensi, Stefano L.
Khananshvili, Daniel
Lewis, Eli C.
Sekler, Israel
author_facet Nita, Iulia I.
Hershfinkel, Michal
Fishman, Daniel
Ozeri, Eyal
Rutter, Guy A.
Sensi, Stefano L.
Khananshvili, Daniel
Lewis, Eli C.
Sekler, Israel
author_sort Nita, Iulia I.
collection PubMed
description Mitochondria mediate dual metabolic and Ca(2+) shuttling activities. While the former is required for Ca(2+) signalling linked to insulin secretion, the role of the latter in β cell function has not been well understood, primarily because the molecular identity of the mitochondrial Ca(2+) transporters were elusive and the selectivity of their inhibitors was questionable. This study focuses on NCLX, the recently discovered mitochondrial Na(+)/Ca(2+) exchanger that is linked to Ca(2+) signalling in MIN6 and primary β cells. Suppression either of NCLX expression, using a siRNA construct (siNCLX) or of its activity, by a dominant negative construct (dnNCLX), enhanced mitochondrial Ca(2+) influx and blocked efflux induced by glucose or by cell depolarization. In addition, NCLX regulated basal, but not glucose-dependent changes, in metabolic rate, mitochondrial membrane potential and mitochondrial resting Ca(2+). Importantly, NCLX controlled the rate and amplitude of cytosolic Ca(2+) changes induced by depolarization or high glucose, indicating that NCLX is a critical and rate limiting component in the cross talk between mitochondrial and plasma membrane Ca(2+) signalling. Finally, knockdown of NCLX expression was followed by a delay in glucose-dependent insulin secretion. These findings suggest that the mitochondrial Na(+)/Ca(2+) exchanger, NCLX, shapes glucose-dependent mitochondrial and cytosolic Ca(2+) signals thereby regulating the temporal pattern of insulin secretion in β cells.
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spelling pubmed-34663262012-10-10 The Mitochondrial Na(+)/Ca(2+) Exchanger Upregulates Glucose Dependent Ca(2+) Signalling Linked to Insulin Secretion Nita, Iulia I. Hershfinkel, Michal Fishman, Daniel Ozeri, Eyal Rutter, Guy A. Sensi, Stefano L. Khananshvili, Daniel Lewis, Eli C. Sekler, Israel PLoS One Research Article Mitochondria mediate dual metabolic and Ca(2+) shuttling activities. While the former is required for Ca(2+) signalling linked to insulin secretion, the role of the latter in β cell function has not been well understood, primarily because the molecular identity of the mitochondrial Ca(2+) transporters were elusive and the selectivity of their inhibitors was questionable. This study focuses on NCLX, the recently discovered mitochondrial Na(+)/Ca(2+) exchanger that is linked to Ca(2+) signalling in MIN6 and primary β cells. Suppression either of NCLX expression, using a siRNA construct (siNCLX) or of its activity, by a dominant negative construct (dnNCLX), enhanced mitochondrial Ca(2+) influx and blocked efflux induced by glucose or by cell depolarization. In addition, NCLX regulated basal, but not glucose-dependent changes, in metabolic rate, mitochondrial membrane potential and mitochondrial resting Ca(2+). Importantly, NCLX controlled the rate and amplitude of cytosolic Ca(2+) changes induced by depolarization or high glucose, indicating that NCLX is a critical and rate limiting component in the cross talk between mitochondrial and plasma membrane Ca(2+) signalling. Finally, knockdown of NCLX expression was followed by a delay in glucose-dependent insulin secretion. These findings suggest that the mitochondrial Na(+)/Ca(2+) exchanger, NCLX, shapes glucose-dependent mitochondrial and cytosolic Ca(2+) signals thereby regulating the temporal pattern of insulin secretion in β cells. Public Library of Science 2012-10-08 /pmc/articles/PMC3466326/ /pubmed/23056385 http://dx.doi.org/10.1371/journal.pone.0046649 Text en © 2012 Nita et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Nita, Iulia I.
Hershfinkel, Michal
Fishman, Daniel
Ozeri, Eyal
Rutter, Guy A.
Sensi, Stefano L.
Khananshvili, Daniel
Lewis, Eli C.
Sekler, Israel
The Mitochondrial Na(+)/Ca(2+) Exchanger Upregulates Glucose Dependent Ca(2+) Signalling Linked to Insulin Secretion
title The Mitochondrial Na(+)/Ca(2+) Exchanger Upregulates Glucose Dependent Ca(2+) Signalling Linked to Insulin Secretion
title_full The Mitochondrial Na(+)/Ca(2+) Exchanger Upregulates Glucose Dependent Ca(2+) Signalling Linked to Insulin Secretion
title_fullStr The Mitochondrial Na(+)/Ca(2+) Exchanger Upregulates Glucose Dependent Ca(2+) Signalling Linked to Insulin Secretion
title_full_unstemmed The Mitochondrial Na(+)/Ca(2+) Exchanger Upregulates Glucose Dependent Ca(2+) Signalling Linked to Insulin Secretion
title_short The Mitochondrial Na(+)/Ca(2+) Exchanger Upregulates Glucose Dependent Ca(2+) Signalling Linked to Insulin Secretion
title_sort mitochondrial na(+)/ca(2+) exchanger upregulates glucose dependent ca(2+) signalling linked to insulin secretion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3466326/
https://www.ncbi.nlm.nih.gov/pubmed/23056385
http://dx.doi.org/10.1371/journal.pone.0046649
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