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首页> 外文期刊>The Journal of biological chemistry >Aberrant fatty acid metabolism in skeletal muscle contributes to insulin resistance in zinc transporter 7 (znt7)-knockout mice
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Aberrant fatty acid metabolism in skeletal muscle contributes to insulin resistance in zinc transporter 7 (znt7)-knockout mice

机译:骨骼肌中异常的脂肪酸代谢导致锌转运蛋白7(znt7)基因敲除小鼠的胰岛素抵抗

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ZnT7 (Slc30a7) is a widely expressed zinc transporter involved in sequestration of zinc into the Golgi apparatus and vesicular compartments. znt7-knockout (KO) mice are mildly zinc-deficient and lean. Despite their lean phenotype, adult male znt7-KO mice are prone to insulin resistance. We hypothesized that fat partitioning from adipose to nonadipose tissues causes insulin resistance in znt7-KO mice. Here, we used biological and biochemical methods, including fatty acid and oxylipin profiling, EM, immunohistochemistry, quantitative RT-PCR, and Western blot analysis, to identify the underlying mechanism of insulin resistance in znt7-KO mice. We found that insulin resistance in this model was primarily associated with increased intracellular fatty acid levels in the skeletal muscle, which promoted intracellular lipid accumulation and production of bioactive lipid mediators, such as 12,13-dihydroxyoctadecanoic acid (12,13-DiHOME) and 12-hydroxyeicosatetraenoic acid (12-HETE). The expression of fatty acid–binding protein 3 (Fabp3) was dramatically up-regulated in the znt7-KO muscle cells accompanied by increased expression of Cd36, Slc27a1, and Slc27a4, the three major fatty acid transporters in the skeletal muscle. We also demonstrated that znt7-KO muscle cells had increased fatty acid oxidative capacity, indicated by enlarged mitochondria and increased mRNA or protein expression of key enzymes involved in the fatty acid mitochondrial shuttle and β-oxidation. We conclude that increased fatty acid uptake in the znt7-KO skeletal muscle is a key factor that contributes to the excessive intracellular lipid deposit and elevated production of bioactive lipid mediators. These mediators may play pivotal roles in oxidative stress and inflammation, leading to insulin resistance.
机译:ZnT7(Slc30a7)是一种广泛表达的锌转运蛋白,参与将锌螯合到高尔基体和囊泡区室中。 znt7基因敲除(KO)小鼠轻度缺锌且瘦弱。尽管其瘦型,成年雄性znt7-KO小鼠仍容易产生胰岛素抵抗。我们假设脂肪从脂肪组织分配到非脂肪组织会引起znt7-KO小鼠胰岛素抵抗。在这里,我们使用了生物和生化方法,包括脂肪酸和脂蛋白谱分析,EM,免疫组织化学,定量RT-PCR和Western blot分析,以鉴定znt7-KO小鼠胰岛素抵抗的潜在机制。我们发现该模型中的胰岛素抵抗主要与骨骼肌中细胞内脂肪酸水平的升高有关,从而促进细胞内脂质的积累和生物活性脂质介质的产生,例如12,13-dihydroxyoctadecanoicic acid(12,13-DiHOME)和12-羟基二十碳四烯酸(12-HETE)。脂肪酸结合蛋白3(Fabp3)的表达在znt7-KO肌肉细胞中显着上调,伴随着骨骼肌中三种主要脂肪酸转运蛋白Cd36,Slc27a1和Slc27a4的表达增加。我们还证明了znt7-KO肌肉细胞具有增加的脂肪酸氧化能力,表现为线粒体增大以及参与脂肪酸线粒体穿梭和β-氧化的关键酶的mRNA或蛋白质表达增加。我们得出的结论是,znt7-KO骨骼肌中脂肪酸摄取的增加是导致过多的细胞内脂质沉积和生物活性脂质介体产量增加的关键因素。这些介体可能在氧化应激和炎症中起关键作用,导致胰岛素抵抗。

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