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PMID: 15448158 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Free fatty acid-induced beta-cell defects are dependent on uncoupling protein 2 expression.

The Journal of biological chemistry ·Vol. 279 ·No. 49 ·2004-12-03 ·Pages 51049-56

Joseph JW, Koshkin V, Saleh MC, Sivitz WI, Zhang CY, Lowell BB, Chan CB, Wheeler MB

Abstract

Chronic exposure to elevated free fatty acids (lipotoxicity) induces uncoupling protein (UCP2) in the pancreatic beta-cell, and therefore a causal link between UCP2 and beta-cell defects associated with obesity may exist. Recently, we showed that lipid treatment in vivo and in vitro in UCP2(-/-) mice/islets does not result in any loss in beta-cell glucose sensitivity. We have now assessed the mechanism of maintained beta-cell function in UCP2(-/-) mice by exposing islets to 0.4 mM palmitate for 48 h. Palmitate treatment increased triglyceride concentrations in wild type (WT) but not UCP2(-/-) islets because of higher palmitate oxidation rates in the UCP2(-/-) islets. Dispersed beta-cells from the palmitate-exposed WT islets had reduced glucose-stimulated hyperpolarization of the mitochondrial membrane potential compared with both control WT and palmitate-exposed UCP2(-/-) beta-cells. The glucose-stimulated increases in the ATP/ADP ratio and cytosolic Ca2+ are attenuated in palmitate-treated WT but not UCP2(-/-) beta-cells. Exposure to palmitate reduced glucose-stimulated insulin secretion (GSIS) in WT islets, whereas UCP2(-/-) islets had enhanced GSIS. Overexpression of recombinant UCP2 but not enhanced green fluorescent protein in beta-cells resulted in a loss of glucose-stimulated hyperpolarization of the mitochondrial membrane potential and GSIS similar to that seen in WT islets exposed to palmitate. Reactive oxygen species (ROS) are known to increase the activity of UCP2. We showed that ROS levels were elevated in control UCP2(-/-) islets as compared with WT and UCP2(-/-) islets overexpressing UCP2 and that palmitate increased ROS in WT and UCP2(-/-) islets overexpressing UCP2 but not in UCP2(-/-) islets. Thus, UCP2(-/-) islets resisted the toxic effects of palmitate by maintaining glucose-dependent metabolism-secretion coupling. We propose that higher free fatty acid oxidation rates prevent accumulation of triglyceride in UCP2(-/-) islets, such accumulation being a phenomenon associated with lipotoxicity.

MeSH Terms
Adenosine Diphosphate/chemistry Adenosine Triphosphate/chemistry Adenoviridae/genetics Animals Blotting, Western Calcium/chemistry,metabolism Cytosol/metabolism Dose-Response Relationship, Drug Fatty Acids/metabolism Fatty Acids, Nonesterified/metabolism Glucose/chemistry,metabolism Insulin/blood,metabolism Ion Channels Islets of Langerhans/metabolism Lipid Metabolism Male Membrane Potentials Membrane Transport Proteins/biosynthesis,genetics Mice Mice, Knockout Mice, Transgenic Mitochondria/metabolism Mitochondrial Proteins/biosynthesis,genetics Obesity/metabolism Oxygen/metabolism Palmitic Acid/metabolism Phenotype Polymorphism, Genetic Reactive Oxygen Species Recombinant Proteins/chemistry Reverse Transcriptase Polymerase Chain Reaction Time Factors Transgenes Triglycerides/chemistry,metabolism Uncoupling Protein 2
Chemicals
Fatty Acids Fatty Acids, Nonesterified Insulin Ion Channels Membrane Transport Proteins Mitochondrial Proteins Reactive Oxygen Species Recombinant Proteins Triglycerides Ucp2 protein, mouse Uncoupling Protein 2 Palmitic Acid Adenosine Diphosphate Adenosine Triphosphate Glucose Oxygen Calcium
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Joseph Jamie W
Departments of Medicine and Physiology, University of Toronto, Ontario M5S 1A8, Canada.
Koshkin Vasilij
Saleh Monique C
Sivitz William I
Zhang Chen-Yu
Lowell Bradford B
Chan Catherine B
Wheeler Michael B
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2004-12-03
Epub
2004-00-23
Pages
51049-56
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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