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The Mitochondrial Ca(2+) Uniporter MCU Is Essential for Glucose-Induced ATP Increases in Pancreatic β-Cells

Glucose induces insulin release from pancreatic β-cells by stimulating ATP synthesis, membrane depolarisation and Ca(2+) influx. As well as activating ATP-consuming processes, cytosolic Ca(2+) increases may also potentiate mitochondrial ATP synthesis. Until recently, the ability to study the role of...

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Autores principales: Tarasov, Andrei I., Semplici, Francesca, Ravier, Magalie A., Bellomo, Elisa A., Pullen, Timothy J., Gilon, Patrick, Sekler, Israel, Rizzuto, Rosario, Rutter, Guy A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3400633/
https://www.ncbi.nlm.nih.gov/pubmed/22829870
http://dx.doi.org/10.1371/journal.pone.0039722
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author Tarasov, Andrei I.
Semplici, Francesca
Ravier, Magalie A.
Bellomo, Elisa A.
Pullen, Timothy J.
Gilon, Patrick
Sekler, Israel
Rizzuto, Rosario
Rutter, Guy A.
author_facet Tarasov, Andrei I.
Semplici, Francesca
Ravier, Magalie A.
Bellomo, Elisa A.
Pullen, Timothy J.
Gilon, Patrick
Sekler, Israel
Rizzuto, Rosario
Rutter, Guy A.
author_sort Tarasov, Andrei I.
collection PubMed
description Glucose induces insulin release from pancreatic β-cells by stimulating ATP synthesis, membrane depolarisation and Ca(2+) influx. As well as activating ATP-consuming processes, cytosolic Ca(2+) increases may also potentiate mitochondrial ATP synthesis. Until recently, the ability to study the role of mitochondrial Ca(2+) transport in glucose-stimulated insulin secretion has been hindered by the absence of suitable approaches either to suppress Ca(2+) uptake into these organelles, or to examine the impact on β-cell excitability. Here, we have combined patch-clamp electrophysiology with simultaneous real-time imaging of compartmentalised changes in Ca(2+) and ATP/ADP ratio in single primary mouse β-cells, using recombinant targeted (Pericam or Perceval, respectively) as well as entrapped intracellular (Fura-Red), probes. Through shRNA-mediated silencing we show that the recently-identified mitochondrial Ca(2+) uniporter, MCU, is required for depolarisation-induced mitochondrial Ca(2+) increases, and for a sustained increase in cytosolic ATP/ADP ratio. By contrast, silencing of the mitochondrial Na(+)-Ca(2+) exchanger NCLX affected the kinetics of glucose-induced changes in, but not steady state values of, cytosolic ATP/ADP. Exposure to gluco-lipotoxic conditions delayed both mitochondrial Ca(2+) uptake and cytosolic ATP/ADP ratio increases without affecting the expression of either gene. Mitochondrial Ca(2+) accumulation, mediated by MCU and modulated by NCLX, is thus required for normal glucose sensing by pancreatic β-cells, and becomes defective in conditions mimicking the diabetic milieu.
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spelling pubmed-34006332012-07-24 The Mitochondrial Ca(2+) Uniporter MCU Is Essential for Glucose-Induced ATP Increases in Pancreatic β-Cells Tarasov, Andrei I. Semplici, Francesca Ravier, Magalie A. Bellomo, Elisa A. Pullen, Timothy J. Gilon, Patrick Sekler, Israel Rizzuto, Rosario Rutter, Guy A. PLoS One Research Article Glucose induces insulin release from pancreatic β-cells by stimulating ATP synthesis, membrane depolarisation and Ca(2+) influx. As well as activating ATP-consuming processes, cytosolic Ca(2+) increases may also potentiate mitochondrial ATP synthesis. Until recently, the ability to study the role of mitochondrial Ca(2+) transport in glucose-stimulated insulin secretion has been hindered by the absence of suitable approaches either to suppress Ca(2+) uptake into these organelles, or to examine the impact on β-cell excitability. Here, we have combined patch-clamp electrophysiology with simultaneous real-time imaging of compartmentalised changes in Ca(2+) and ATP/ADP ratio in single primary mouse β-cells, using recombinant targeted (Pericam or Perceval, respectively) as well as entrapped intracellular (Fura-Red), probes. Through shRNA-mediated silencing we show that the recently-identified mitochondrial Ca(2+) uniporter, MCU, is required for depolarisation-induced mitochondrial Ca(2+) increases, and for a sustained increase in cytosolic ATP/ADP ratio. By contrast, silencing of the mitochondrial Na(+)-Ca(2+) exchanger NCLX affected the kinetics of glucose-induced changes in, but not steady state values of, cytosolic ATP/ADP. Exposure to gluco-lipotoxic conditions delayed both mitochondrial Ca(2+) uptake and cytosolic ATP/ADP ratio increases without affecting the expression of either gene. Mitochondrial Ca(2+) accumulation, mediated by MCU and modulated by NCLX, is thus required for normal glucose sensing by pancreatic β-cells, and becomes defective in conditions mimicking the diabetic milieu. Public Library of Science 2012-07-19 /pmc/articles/PMC3400633/ /pubmed/22829870 http://dx.doi.org/10.1371/journal.pone.0039722 Text en Tarasov 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
Tarasov, Andrei I.
Semplici, Francesca
Ravier, Magalie A.
Bellomo, Elisa A.
Pullen, Timothy J.
Gilon, Patrick
Sekler, Israel
Rizzuto, Rosario
Rutter, Guy A.
The Mitochondrial Ca(2+) Uniporter MCU Is Essential for Glucose-Induced ATP Increases in Pancreatic β-Cells
title The Mitochondrial Ca(2+) Uniporter MCU Is Essential for Glucose-Induced ATP Increases in Pancreatic β-Cells
title_full The Mitochondrial Ca(2+) Uniporter MCU Is Essential for Glucose-Induced ATP Increases in Pancreatic β-Cells
title_fullStr The Mitochondrial Ca(2+) Uniporter MCU Is Essential for Glucose-Induced ATP Increases in Pancreatic β-Cells
title_full_unstemmed The Mitochondrial Ca(2+) Uniporter MCU Is Essential for Glucose-Induced ATP Increases in Pancreatic β-Cells
title_short The Mitochondrial Ca(2+) Uniporter MCU Is Essential for Glucose-Induced ATP Increases in Pancreatic β-Cells
title_sort mitochondrial ca(2+) uniporter mcu is essential for glucose-induced atp increases in pancreatic β-cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3400633/
https://www.ncbi.nlm.nih.gov/pubmed/22829870
http://dx.doi.org/10.1371/journal.pone.0039722
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