SLC25A46 promotes mitochondrial fission and mediates resistance to lipotoxic stress in INS-1E insulin-secreting cells

Author:

Santo-Domingo Jaime12,Lassueur Steve1,Galindo Antonio Núñez3,Alvarez-Illera Pilar2,Romero-Sanz Silvia2,Caldero-Escudero Elena2,de la Fuente Sergio45,Dayon Loïc36ORCID,Wiederkehr Andreas16ORCID

Affiliation:

1. Nestlé Institute of Health Sciences, Nestlé Research 1 Department of Cell Biology , , CH-1015 Lausanne , Switzerland

2. Unidad de Excelencia Instituto de Biología y Genética Molecular (IBGM), Faculty of Medicine 2 Department of Biochemistry and Molecular Biology , , 47003 Valladolid , Spain

3. Proteomics, Nestlé Institute of Food Safety & Analytical Sciences, Nestlé Research 4 , CH-1015 Lausanne , Switzerland

4. Center for Translational Medicine 3 , Department of Medicine , , Philadelphia, PA 19107 , USA

5. Thomas Jefferson University 3 , Department of Medicine , , Philadelphia, PA 19107 , USA

6. Ecole Polytechnique Fédérale de Lausanne 5 , CH-1015 Lausanne , Switzerland

Abstract

ABSTRACTGlucose sensing in pancreatic β-cells depends on oxidative phosphorylation and mitochondria-derived signals that promote insulin secretion. Using mass spectrometry-based phosphoproteomics to search for downstream effectors of glucose-dependent signal transduction in INS-1E insulinoma cells, we identified the outer mitochondrial membrane protein SLC25A46. Under resting glucose concentrations, SLC25A46 was phosphorylated on a pair of threonine residues (T44/T45) and was dephosphorylated in response to glucose-induced Ca2+ signals. Overexpression of SLC25A46 in INS-1E cells caused complete mitochondrial fragmentation, resulting in a mild mitochondrial defect associated with lowered glucose-induced insulin secretion. In contrast, inactivation of the Slc25a46 gene resulted in dramatic mitochondrial hyperfusion, without affecting respiratory activity or insulin secretion. Consequently, SLC25A46 is not essential for metabolism–secretion coupling under normal nutrient conditions. Importantly, insulin-secreting cells lacking SLC25A46 had an exacerbated sensitivity to lipotoxic conditions, undergoing massive apoptosis when exposed to palmitate. Therefore, in addition to its role in mitochondrial dynamics, SLC25A46 plays a role in preventing mitochondria-induced apoptosis in INS-E cells exposed to nutrient stress. By protecting mitochondria, SLC25A46 might help to maintain β-cell mass essential for blood glucose control.

Funder

Nestle Research

Programa Estratégico Instituto de Biología y Genética Molecular

Publisher

The Company of Biologists

Subject

Cell Biology

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