Overexpression of glutathione peroxidase 4 prevents β-cell dysfunction induced by prolonged elevation of lipids in vivo

Author:

Koulajian Khajag1,Ivovic Alexander1,Ye Kaitai1,Desai Tejas1,Shah Anu123,George Fantus I.12345,Ran Qitao678,Giacca Adria1459

Affiliation:

1. Department of Physiology, Faculty of Medicine, University of Toronto, Toronto, Ontario, Canada;

2. Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario, Canada;

3. Toronto General Research Institute, University Health Network, Toronto, Ontario, Canada;

4. Department of Medicine, Faculty of Medicine, University of Toronto, Toronto, Ontario, Canada;

5. Banting and Best Diabetes Centre, University of Toronto, Toronto, Ontario, Canada; and

6. Department of Cellular and Structural Biology, University of Texas Health Science Center at San Antonio, San Antonio, Texas;

7. Barshop Institute for Longevity and Aging Studies, University of Texas Health Science Center at San Antonio, San Antonio, Texas;

8. Department of Veterans Affairs, South Texas Veterans Health Care System, San Antonio, Texas;

9. Institute of Medical Sciences, Faculty of Medicine, University of Toronto, Toronto, Ontario, Canada

Abstract

We have shown that oxidative stress is a mechanism of free fatty acid (FFA)-induced β-cell dysfunction. Unsaturated fatty acids in membranes, including plasma and mitochondrial membranes, are substrates for lipid peroxidation, and lipid peroxidation products are known to cause impaired insulin secretion. Therefore, we hypothesized that mice overexpressing glutathione peroxidase-4 (GPx4), an enzyme that specifically reduces lipid peroxides, are protected from fat-induced β-cell dysfunction. GPx4-overexpressing mice and their wild-type littermate controls were infused intravenously with saline or oleate for 48 h, after which reactive oxygen species (ROS) were imaged, using dihydrodichlorofluorescein diacetate in isolated islets, and β-cell function was assessed ex vivo in isolated islets and in vivo during hyperglycemic clamps. Forty-eight-hour FFA elevation in wild-type mice increased ROS and the lipid peroxidation product malondialdehyde and impaired β-cell function ex vivo in isolated islets and in vivo, as assessed by decreased disposition index. Also, islets of wild-type mice exposed to oleate for 48 h had increased ROS and lipid peroxides and decreased β-cell function. In contrast, GPx4-overexpressing mice showed no FFA-induced increase in ROS and lipid peroxidation and were protected from the FFA-induced impairment of β-cell function assessed in vitro, ex vivo and in vivo. These results implicate lipid peroxidation in FFA-induced β-cell dysfunction.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

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