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Interleukin-6 Reduces β-Cell Oxidative Stress by Linking Autophagy With the Antioxidant Response.

Citation
Marasco, M. R., et al. “Interleukin-6 Reduces Β-Cell Oxidative Stress By Linking Autophagy With The Antioxidant Response.”. Diabetes, pp. 1576-1588.
Center Indiana University
Author Michelle R Marasco, Abass M Conteh, Christopher A Reissaus, John E Cupit, Evan M Appleman, Raghavendra G Mirmira, Amelia K Linnemann
Abstract

Production of reactive oxygen species (ROS) is a key instigator of β-cell dysfunction in diabetes. The pleiotropic cytokine interleukin 6 (IL-6) has previously been linked to β-cell autophagy but has not been studied in the context of β-cell antioxidant response. We used a combination of animal models of diabetes and analysis of cultured human islets and rodent β-cells to study how IL-6 influences antioxidant response. We show that IL-6 couples autophagy to antioxidant response and thereby reduces ROS in β-cells and human islets. β-Cell-specific loss of IL-6 signaling in vivo renders mice more susceptible to oxidative damage and cell death through the selective β-cell toxins streptozotocin and alloxan. IL-6-driven ROS reduction is associated with an increase in the master antioxidant factor NRF2, which rapidly translocates to the mitochondria to decrease mitochondrial activity and stimulate mitophagy. IL-6 also initiates a robust transient decrease in cellular cAMP levels, likely contributing to the stimulation of mitophagy to mitigate ROS. Our findings suggest that coupling autophagy to antioxidant response in β-cells leads to stress adaptation that can reduce cellular apoptosis. These findings have implications for β-cell survival under diabetogenic conditions and present novel targets for therapeutic intervention.

Year of Publication
2018
Journal
Diabetes
Volume
67
Issue
8
Number of Pages
1576-1588
Date Published
12/2018
ISSN Number
1939-327X
DOI
10.2337/db17-1280
Alternate Journal
Diabetes
PMID
29784660
PMCID
PMC6054440
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