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Hepatic oleate regulates adipose tissue lipogenesis and fatty acid oxidation

机译:肝油酸酯调节脂肪组织的脂肪生成和脂肪酸氧化

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摘要

Hepatic steatosis is associated with detrimental metabolic phenotypes including enhanced risk for diabetes. Stearoyl-CoA desaturases (SCDs) catalyze the synthesis of MUFAs. In mice, genetic ablation of SCDs reduces hepatic de novo lipogenesis (DNL) and protects against diet-induced hepatic steatosis and adiposity. To understand the mechanism by which hepatic MUFA production influences adipose tissue stores, we created two liver-specific transgenic mouse models in the SCD1 knockout that express either human SCD5 or mouse SCD3, that synthesize oleate and palmitoleate, respectively. We demonstrate that hepatic de novo synthesized oleate, but not palmitoleate, stimulate hepatic lipid accumulation and adiposity, reversing the protective effect of the global SCD1 knockout under lipogenic conditions. Unexpectedly, the accumulation of hepatic lipid occurred without induction of the hepatic DNL program. Changes in hepatic lipid composition were reflected in plasma and in adipose tissue. Importantly, endogenously synthesized hepatic oleate was associated with suppressed DNL and fatty acid oxidation in white adipose tissue. Regression analysis revealed a strong correlation between adipose tissue lipid fuel utilization and hepatic and adipose tissue lipid storage. These data suggest an extrahepatic mechanism where endogenous hepatic oleate regulates lipid homeostasis in adipose tissues.
机译:肝脂肪变性与有害的代谢表型有关,包括增加患糖尿病的风险。硬脂酰辅酶A去饱和酶(SCD)催化MUFA的合成。在小鼠中,SCD的基因消融可减少肝脏新生脂肪形成(DNL),并防止饮食引起的肝脂肪变性和肥胖。为了了解肝脏MUFA产生影响脂肪组织存储的机制,我们在SCD1基因敲除中创建了两种肝特异性转基因小鼠模型,它们分别表达人SCD5或小鼠SCD3,分别合成油酸酯和棕榈酸酯。我们证明肝脏从头合成的油酸酯,而不是棕榈油酸酯,刺激了肝脏脂质的积累和肥胖,逆转了在致脂条件下全局SCD1敲除的保护作用。出乎意料的是,肝脂质的积累发生在没有诱导肝DNL程序的情况下。血浆和脂肪组织中反映出肝脂质组成的变化。重要的是,内源性合成的肝油酸酯与白色脂肪组织中抑制的DNL和脂肪酸氧化有关。回归分析表明,脂肪组织脂质燃料利用与肝,脂肪组织脂质存储之间存在很强的相关性。这些数据提示了一种肝外机制,其中内源性肝油酸酯调节脂肪组织中的脂质稳态。

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