Nrf2-Mediated Antioxidant Defense and Peroxiredoxin 6 Are Linked to Biosynthesis of Palmitic Acid Ester of 9-Hydroxystearic Acid

Fatty acid esters of hydroxy fatty acids (FAHFAs) are lipid mediators with promising antidiabetic and anti-inflammatory properties that are formed in white adipose tissue (WAT) via de novo lipogenesis, but their biosynthetic enzymes are unknown. Using a combination of lipidomics in WAT, quantitative...

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Veröffentlicht in:Diabetes (New York, N.Y.) N.Y.), 2018-06, Vol.67 (6), p.1190-1199
Hauptverfasser: Kuda, Ondrej, Brezinova, Marie, Silhavy, Jan, Landa, Vladimir, Zidek, Vaclav, Dodia, Chandra, Kreuchwig, Franziska, Vrbacky, Marek, Balas, Laurence, Durand, Thierry, Hübner, Norbert, Fisher, Aron B, Kopecky, Jan, Pravenec, Michal
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Sprache:eng
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Zusammenfassung:Fatty acid esters of hydroxy fatty acids (FAHFAs) are lipid mediators with promising antidiabetic and anti-inflammatory properties that are formed in white adipose tissue (WAT) via de novo lipogenesis, but their biosynthetic enzymes are unknown. Using a combination of lipidomics in WAT, quantitative trait locus mapping, and correlation analyses in rat BXH/HXB recombinant inbred strains, as well as response to oxidative stress in murine models, we elucidated the potential pathway of biosynthesis of several FAHFAs. Comprehensive analysis of WAT samples identified ∼160 regioisomers, documenting the complexity of this lipid class. The linkage analysis highlighted several members of the nuclear factor, erythroid 2 like 2 ( )-mediated antioxidant defense system ( ), lipid-handling proteins ( ), and the family of flavin containing monooxygenases ( ) as the positional candidate genes. Transgenic expression of and deletion of genes resulted in reduction of palmitic acid ester of 9-hydroxystearic acid (9-PAHSA) and 11-PAHSA levels, while oxidative stress induced by an inhibitor of glutathione synthesis increased PAHSA levels nonspecifically. Our results indicate that the synthesis of FAHFAs via carbohydrate-responsive element-binding protein-driven de novo lipogenesis depends on the adaptive antioxidant system and suggest that FAHFAs may link activity of this system with insulin sensitivity in peripheral tissues.
ISSN:0012-1797
1939-327X
DOI:10.2337/db17-1087