Differential Effect of Glucose on ER-Mitochondria Ca2+ Exchange Participates in Insulin Secretion and Glucotoxicity-Mediated Dysfunction of β-Cells

被引:52
|
作者
Dingreville, Florian [1 ]
Panthu, Baptiste [1 ]
Thivolet, Charles [1 ,2 ]
Ducreux, Sylvie [1 ]
Gouriou, Yves [1 ]
Pesenti, Sandra [1 ]
Chauvin, Marie-Agnes [1 ]
Chikh, Karim [2 ]
Errazuriz-Cerda, Elisabeth [3 ]
Van Coppenolle, Fabien [1 ]
Rieusset, Jennifer [1 ]
Madec, Anne-Marie [1 ]
机构
[1] Univ Claude Bernard Lyon 1, INSA, INRA, CarMeN Lab,INSERM, Oullins, France
[2] Hop Lyon Sud, Hosp Civils Lyon, Dept Endocrinol & Diabet, Pierre Benite, France
[3] Univ Claude Bernard Lyon 1, CIQLE, Lyon, France
关键词
MEMBRANE MAM INTEGRITY; ENDOPLASMIC-RETICULUM; CALCIUM; METABOLISM; RECEPTOR; BIOENERGETICS; DISRUPTION; DYNAMICS; EXPOSURE; CONTACTS;
D O I
10.2337/db18-1112
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Glucotoxicity-induced beta-cell dysfunction in type 2 diabetes is associated with alterations of mitochondria and the endoplasmic reticulum (ER). Both organelles interact at contact sites, defined as mitochondria-associated membranes (MAMs), which were recently implicated in the regulation of glucose homeostasis. The role of MAMs in beta-cells is still largely unknown, and their implication in glucotoxicity-associated beta-cell dysfunction remains to be defined. Here, we report that acute glucose treatment stimulated ER-mitochondria interactions and calcium (Ca2+) exchange in INS-1E cells, whereas disruption of MAMs altered glucose-stimulated insulin secretion (GSIS). Conversely, chronic incubations with high glucose of either INS-1E cells or human pancreatic islets altered GSIS and concomitantly reduced ER Ca2+ store, increased basal mitochondrial Ca2+, and reduced ATP-stimulated ER-mitochondria Ca2+ exchanges, despite an increase of organelle interactions. Furthermore, glucotoxicity-induced perturbations of Ca2+ signaling are associated with ER stress, altered mitochondrial respiration, and mitochondria fragmentation, and these organelle stresses may participate in increased organelle tethering as a protective mechanism. Last, sustained induction of ER-mitochondria interactions using a linker reduced organelle Ca2+ exchange, induced mitochondrial fission, and altered GSIS. Therefore, dynamic organelle coupling participates in GSIS in beta-cells, and over time, disruption of organelle Ca2+ exchange might be a novel mechanism contributing to glucotoxicity-induced beta-cell dysfunction.
引用
收藏
页码:1778 / 1794
页数:17
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