NQO1 protects obese mice through improvements in glucose and lipid metabolism
Author
Di Francesco, AndreaChoi, Youngshim
Bernier, Michel
Zhang, Yingchun
Diaz-Ruiz, Alberto
Aon, Miguel A.
Kalafut, Krystle
Ehrlich, Margaux R.
Murt, Kelsey
Ali, Ahmed
Pearson, Kevin J.
Levan, Sophie
Preston, Joshua D.
Martin-Montalvo, Alejandro
Martindale, Jennifer L.
Abdelmohsen, Kotb
Michel, Cole R.
Willmes, Diana M.
Henke, Christine
Navas, Placido
Villalba, Jose Manuel
Siegel, David
Gorospe, Myriam
Fritz, Kristofer
Biswal, Shyam
Ross, David
de Cabo, Rafael
Date
2020-12-01Journal
npj Aging and Mechanisms of DiseasePublisher
Springer NatureType
Article
Metadata
Show full item recordAbstract
Chronic nutrient excess leads to metabolic disorders and insulin resistance. Activation of stress-responsive pathways via Nrf2 activation contributes to energy metabolism regulation. Here, inducible activation of Nrf2 in mice and transgenesis of the Nrf2 target, NQO1, conferred protection from diet-induced metabolic defects through preservation of glucose homeostasis, insulin sensitivity, and lipid handling with improved physiological outcomes. NQO1-RNA interaction mediated the association with and inhibition of the translational machinery in skeletal muscle of NQO1 transgenic mice. NQO1-Tg mice on high-fat diet had lower adipose tissue macrophages and enhanced expression of lipogenic enzymes coincident with reduction in circulating and hepatic lipids. Metabolomics data revealed a systemic metabolic signature of improved glucose handling, cellular redox, and NAD+ metabolism while label-free quantitative mass spectrometry in skeletal muscle uncovered a distinct diet- and genotype-dependent acetylation pattern of SIRT3 targets across the core of intermediary metabolism. Thus, under nutritional excess, NQO1 transgenesis preserves healthful benefits.Sponsors
The work was funded, in part, by the Intramural Research Program of the National Institutes of Health/NIA and by grants #5R01CA206155 and R01ES031263 (S.B.), R01 DK109964 (D.R., K.F., R.d.C.).Identifier to cite or link to this item
http://hdl.handle.net/10713/14158ae974a485f413a2113503eed53cd6c53
10.1038/s41514-020-00051-6