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Prolyl-4-hydroxylase 3 maintains β cell glucose metabolism during fatty acid excess in mice

Authors :
Daniela Nasteska
Federica Cuozzo
Katrina Viloria
Elspeth M. Johnson
Alpesh Thakker
Rula Bany Bakar
Rebecca L. Westbrook
Jonathan P. Barlow
Monica Hoang
Jamie W. Joseph
Gareth G. Lavery
Ildem Akerman
James Cantley
Leanne Hodson
Daniel A. Tennant
David J. Hodson
Source :
JCI Insight, Vol 6, Iss 16 (2021)
Publication Year :
2021
Publisher :
American Society for Clinical investigation, 2021.

Abstract

The α-ketoglutarate–dependent dioxygenase, prolyl-4-hydroxylase 3 (PHD3), is an HIF target that uses molecular oxygen to hydroxylate peptidyl prolyl residues. Although PHD3 has been reported to influence cancer cell metabolism and liver insulin sensitivity, relatively little is known about the effects of this highly conserved enzyme in insulin-secreting β cells in vivo. Here, we show that the deletion of PHD3 specifically in β cells (βPHD3KO) was associated with impaired glucose homeostasis in mice fed a high-fat diet. In the early stages of dietary fat excess, βPHD3KO islets energetically rewired, leading to defects in the management of pyruvate fate and a shift from glycolysis to increased fatty acid oxidation (FAO). However, under more prolonged metabolic stress, this switch to preferential FAO in βPHD3KO islets was associated with impaired glucose-stimulated ATP/ADP rises, Ca2+ fluxes, and insulin secretion. Thus, PHD3 might be a pivotal component of the β cell glucose metabolism machinery in mice by suppressing the use of fatty acids as a primary fuel source during the early phases of metabolic stress.

Subjects

Subjects :
Endocrinology
Metabolism
Medicine

Details

Language :
English
ISSN :
23793708
Volume :
6
Issue :
16
Database :
Directory of Open Access Journals
Journal :
JCI Insight
Publication Type :
Academic Journal
Accession number :
edsdoj.1bf081e6aea049debb7985fde804b9c9
Document Type :
article
Full Text :
https://doi.org/10.1172/jci.insight.140288