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Cyb5r3 links FoxO1-dependent mitochondrial dysfunction with β-cell failure.
Citation | “Cyb5R3 Links Foxo1-Dependent Mitochondrial Dysfunction With Β-Cell Failure.”. Molecular Metabolism, pp. 97-111. . |
Center | Columbia University |
Author | Jason Fan, Wen Du, Ja Young Kim-Muller, Jinsook Son, Taiyi Kuo, Delfina Larrea, Christian Garcia, Takumi Kitamoto, Michael J Kraakman, Edward Owusu-Ansah, Vincenzo Cirulli, Domenico Accili |
Keywords | Beta cell dedifferentiation, Diabetes genetics, Diabetes therapy, Endocrine pancreas, Glucose clamp, hyperglycemia, Mitochondrial complex III failure, Transcription factor in beta cell function, type 2 diabetes |
Abstract |
OBJECTIVE: Diabetes is characterized by pancreatic β-cell dedifferentiation. Dedifferentiating β cells inappropriately metabolize lipids over carbohydrates and exhibit impaired mitochondrial oxidative phosphorylation. However, the mechanism linking the β-cell's response to an adverse metabolic environment with impaired mitochondrial function remains unclear. METHODS: Here we report that the oxidoreductase cytochrome b5 reductase 3 (Cyb5r3) links FoxO1 signaling to β-cell stimulus/secretion coupling by regulating mitochondrial function, reactive oxygen species generation, and nicotinamide actin dysfunction (NAD)/reduced nicotinamide actin dysfunction (NADH) ratios. RESULTS: The expression of Cyb5r3 is decreased in FoxO1-deficient β cells. Mice with β-cell-specific deletion of Cyb5r3 have impaired insulin secretion, resulting in glucose intolerance and diet-induced hyperglycemia. Cyb5r3-deficient β cells have a blunted respiratory response to glucose and display extensive mitochondrial and secretory granule abnormalities, consistent with altered differentiation. Moreover, FoxO1 is unable to maintain expression of key differentiation markers in Cyb5r3-deficient β cells, suggesting that Cyb5r3 is required for FoxO1-dependent lineage stability. CONCLUSIONS: The findings highlight a pathway linking FoxO1 to mitochondrial dysfunction that can mediate β-cell failure. |
Year of Publication |
2020
|
Journal |
Molecular metabolism
|
Volume |
34
|
Number of Pages |
97-111
|
Date Published |
04/2020
|
ISSN Number |
2212-8778
|
DOI |
10.1016/j.molmet.2019.12.008
|
Alternate Journal |
Mol Metab
|
PMID |
32180563
|
PMCID |
PMC7031142
|
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