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Pancreatic islet protection at the expense of secretory function involves serine-linked mitochondrial one-carbon metabolism

Authors :
Pelligra, Angela
Mrugala, Jessica
Griess, Kerstin
Kirschner, Philip
Nortmann, Oliver
Bartosinska, Barbara
Köster, Andrea
Krupenko, Natalia I.
Gebel, Dominik
Westhoff, Philipp
Steckel, Bodo
Eberhard, Daniel
Herebian, Diran
Belgardt, Bengt-Frederik
Schrader, Jürgen
Weber, Andreas P.M.
Krupenko, Sergey A.
Lammert, Eckhard
Source :
Cell Reports; June 2023, Vol. 42 Issue: 6
Publication Year :
2023

Abstract

Type 2 diabetes is characterized by insulin hypersecretion followed by reduced glucose-stimulated insulin secretion (GSIS). Here we show that acute stimulation of pancreatic islets with the insulin secretagogue dextrorphan (DXO) or glibenclamide enhances GSIS, whereas chronic treatment with high concentrations of these drugs reduce GSIS but protect islets from cell death. Bulk RNA sequencing of islets shows increased expression of genes for serine-linked mitochondrial one-carbon metabolism (OCM) after chronic, but not acute, stimulation. In chronically stimulated islets, more glucose is metabolized to serine than to citrate, and the mitochondrial ATP/ADP ratio decreases, whereas the NADPH/NADP+ratio increases. Activating transcription factor-4 (Atf4) is required and sufficient to activate serine-linked mitochondrial OCM genes in islets, with gain- and loss-of-function experiments showing that Atf4 reduces GSIS and is required, but not sufficient, for full DXO-mediated islet protection. In sum, we identify a reversible metabolic pathway that provides islet protection at the expense of secretory function.

Details

Language :
English
ISSN :
22111247
Volume :
42
Issue :
6
Database :
Supplemental Index
Journal :
Cell Reports
Publication Type :
Periodical
Accession number :
ejs63167299
Full Text :
https://doi.org/10.1016/j.celrep.2023.112615