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Manganese supplementation protects against diet-induced diabetes in wild type mice by enhancing insulin secretion
Soh-Hyun Lee1, Hani A Jouihan, Robert C Cooksey
1Departments of Internal Medicine and Biochemistry, Veterans Affairs Medical Center, Salt Lake City, UT 84132, USA.
Abstract:
Mitochondrial dysfunction is both a contributing mechanism and complication of diabetes, and oxidative stress contributes to that dysfunction. Mitochondrial manganese-superoxide dismutase (MnSOD) is a metalloenzyme that provides antioxidant protection. We have previously shown in a mouse model of hereditary iron overload that cytosolic iron levels affected mitochondrial manganese availability, MnSOD activity, and insulin secretion. We therefore sought to determine the metallation status of MnSOD in wild-type mice and whether altering that status affected β-cell function. 129/SvEVTac mice given supplemental manganese exhibited a 73% increase in hepatic MnSOD activity and increased metallation of MnSOD. To determine whether manganese supplementation offered glucose homeostasis under a situation of β-cell stress, we challenged C57BL/6J mice, which are more susceptible to diet-induced diabetes, with a high-fat diet for 12 weeks. Manganese was supplemented or not for the final 8 weeks on that diet, after which we examined glucose tolerance and the function of isolated islets. Liver mitochondria from manganese-injected C57BL/6J mice had similar increases in MnSOD activity (81%) and metallation as were seen in 129/SvEVTac mice. The manganese-treated group fed high fat had improved glucose tolerance (24% decrease in fasting glucose and 41% decrease in area under the glucose curve), comparable with mice on normal chow and increased serum insulin levels. Isolated islets from the manganese-treated group exhibited improved insulin secretion, decreased lipid peroxidation, and improved mitochondrial function. In conclusion, MnSOD metallation and activity can be augmented with manganese supplementation in normal mice on normal chow, and manganese treatment can increase insulin secretion to improve glucose tolerance under conditions of dietary stress.
Insights
Supplementing with manganese boosts mitochondrial manganese-superoxide dismutase (MnSOD) activity, improving glucose tolerance and insulin secretion in mice under metabolic stress. This highlights manganese
Area of Science:
- Mitochondrial biochemistry and diabetes pathophysiology.
- Enzymology and metalloenzyme function.
- Nutritional biochemistry and metabolic regulation.
Background:
- Mitochondrial dysfunction and oxidative stress are implicated in diabetes development and progression.
- Manganese-superoxide dismutase (MnSOD) is a key mitochondrial antioxidant enzyme.
- Previous studies linked cytosolic iron to mitochondrial manganese availability and insulin secretion.
Purpose of the Study:
- To investigate the manganese metallation status of MnSOD in wild-type mice.
- To determine if altering MnSOD metallation affects pancreatic beta-cell function.
- To assess the impact of manganese supplementation on glucose homeostasis under dietary stress.
Main Methods:
- Administered supplemental manganese to 129/SvEVTac and C57BL/6J mice.
- Challenged C57BL/6J mice with a high-fat diet to induce metabolic stress.
- Measured hepatic MnSOD activity, MnSOD metallation, glucose tolerance, and isolated islet function.
Main Results:
- Manganese supplementation significantly increased hepatic MnSOD activity and metallation in both mouse strains.
- Manganese-treated mice on a high-fat diet exhibited improved glucose tolerance and higher insulin levels.
- Isolated islets from manganese-treated mice showed enhanced insulin secretion, reduced lipid peroxidation, and improved mitochondrial function.
Conclusions:
- MnSOD metallation and activity can be effectively increased through manganese supplementation.
- Manganese treatment improves glucose tolerance and insulin secretion, particularly under conditions of metabolic stress.
- Augmenting MnSOD function via manganese supplementation represents a potential strategy for managing diabetes.
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