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

机译:Nrf2介导的抗氧化防御和过氧化物酶6与9-羟基硬脂酸棕榈酸酯的生物合成有关

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摘要

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 (Nrf2)-mediated antioxidant defense system (Prdx6, Mgst1, Mgst3), lipid-handling proteins (Cd36, Scd6, Acnat1, Acnat2, Baat), and the family of flavin containing monooxygenases (Fmo) as the positional candidate genes. Transgenic expression of Nrf2 and deletion of Prdx6 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.
机译:羟基脂肪酸的脂肪酸酯(FAHFA)是脂质脂质,具有通过新生脂肪形成在白色脂肪组织(WAT)中形成的有希望的抗糖尿病和抗炎特性,但其生物合成酶尚不清楚。使用WAT中的脂质组学,大鼠BXH / HXB重组自交系中定量组性状基因座图和相关性分析的组合,以及鼠模型中对氧化应激的响应,我们阐明了几种FAHFA生物合成的潜在途径。对WAT样品的综合分析确定了约160种区域异构体,证明了这类脂质的复杂性。连锁分析突出显示了核因子,类红细胞2样2(Nrf2)介导的抗氧化防御系统(Prdx6,Mgst1,Mgst3),脂质处理蛋白(Cd36,Scd6,Acnat1,Acnat2,Baat)以及该家族的几个成员含黄素的单加氧酶(Fmo)作为位置候选基因。 Nrf2的转基因表达和Prdx6基因的缺失导致9-羟基硬脂酸(9-PAHSA)和11-PAHSA水平的棕榈酸酯减少,而谷胱甘肽合成抑制剂诱导的氧化应激非特异性地增加了PAHSA水平。我们的结果表明,通过碳水化合物反应性元素结合蛋白驱动的新生脂肪生成来合成FAHFA取决于适应性抗氧化剂系统,并表明FAHFA可能将该系统的活性与周围组织的胰岛素敏感性联系起来。

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