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Essential Role of Mitochondrial Ca2+ Uniporter in the Generation of Mitochondrial pH Gradient and Metabolism-Secretion Coupling in Insulin-releasing Cells
Authors:Xianglan Quan  Tuyet Thi Nguyen  Seong-Kyung Choi  Shanhua Xu  Ranjan Das  Seung-Kuy Cha  Nari Kim  Jin Han  Andreas Wiederkehr  Claes B Wollheim  Kyu-Sang Park
Institution:From the Department of Physiology, Yonsei University Wonju College of Medicine, Wonju, Gangwon-Do 220-701, Korea.;§Department of Physiology, College of Medicine, Inje University, Busan 614-735, Korea.;Nestlé Institute of Health Sciences, 1015 Lausanne, and ;Department of Cell Physiology and Metabolism, University of Geneva, 1211 Geneva 4, Switzerland
Abstract:In pancreatic β-cells, ATP acts as a signaling molecule initiating plasma membrane electrical activity linked to Ca2+ influx, which triggers insulin exocytosis. The mitochondrial Ca2+ uniporter (MCU) mediates Ca2+ uptake into the organelle, where energy metabolism is further stimulated for sustained second phase insulin secretion. Here, we have studied the contribution of the MCU to the regulation of oxidative phosphorylation and metabolism-secretion coupling in intact and permeabilized clonal β-cells as well as rat pancreatic islets. Knockdown of MCU with siRNA transfection blunted matrix Ca2+ rises, decreased nutrient-stimulated ATP production as well as insulin secretion. Furthermore, MCU knockdown lowered the expression of respiratory chain complexes, mitochondrial metabolic activity, and oxygen consumption. The pH gradient formed across the inner mitochondrial membrane following nutrient stimulation was markedly lowered in MCU-silenced cells. In contrast, nutrient-induced hyperpolarization of the electrical gradient was not altered. In permeabilized cells, knockdown of MCU ablated matrix acidification in response to extramitochondrial Ca2+. Suppression of the putative Ca2+/H+ antiporter leucine zipper-EF hand-containing transmembrane protein 1 (LETM1) also abolished Ca2+-induced matrix acidification. These results demonstrate that MCU-mediated Ca2+ uptake is essential to establish a nutrient-induced mitochondrial pH gradient which is critical for sustained ATP synthesis and metabolism-secretion coupling in insulin-releasing cells.
Keywords:insulin secretion  mitochondrial membrane potential  mitochondrial metabolism  mitochondrial respiratory chain complex  mitochondrial transport  pancreatic islet  INS-1E cells  Leucine zipper-EF hand-containing transmembrane protein 1  Mitochondrial Ca2+ uniporter  Mitochondrial pH gradient
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