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Lipotoxicity of the Pancreatic β-Cell Is Associated With Glucose-Dependent Esterification of Fatty Acids Into Neutral Lipids

机译:胰β细胞的脂毒性与葡萄糖转化为中性脂质的脂肪酸依赖的酯化有关

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摘要

Prolonged exposure of isolated islets to supraphysiologic concentrations of palmitate decreases insulin gene expression in the presence of elevated glucose levels. This study was designed to determine whether or not this phenomenon is associated with a glucose-dependent increase in esterification of fatty acids into neutral lipids. Gene expression of sn-glycerol-3-phosphate acyltransferase (GPAT), diacylglycerol acyltransferase (DGAT), and hormone-sensitive lipase (HSL), three key enzymes of lipid metabolism, was detected in isolated rat islets. Their levels of expression were not affected after a 72-h exposure to elevated glucose and palmitate. To determine the effects of glucose on palmitate-induced neutral lipid synthesis, isolated rat islets were cultured for 72 h with trace amounts of [14C]palmitate with or without 0.5 mmol/l unlabeled palmitate, at 2.8 or 16.7 mmol/l glucose. Glucose increased incorporation of [14C]palmitate into complex lipids. Addition of exogenous palmitate directed lipid metabolism toward neutral lipid synthesis. As a result, neutral lipid mass was increased upon prolonged incubation with elevated palmitate only in the presence of high glucose. The ability of palmitate to increase neutral lipid synthesis in the presence of high glucose was concentration-dependent in HIT cells and was inversely correlated to insulin mRNA levels. 2-Bromopalmitate, an inhibitor of fatty acid mitochondrial β-oxidation, reproduced the inhibitory effect of palmitate on insulin mRNA levels. In contrast, palmitate methyl ester, which is not metabolized, and the medium-chain fatty acid octanoate, which is readily oxidized, did not affect insulin gene expression, suggesting that fatty-acid inhibition of insulin gene expression requires activation of the esterification pathway. These results demonstrate that inhibition of insulin gene expression upon prolonged exposure of islets to palmitate is associated with a glucose-dependent increase in esterification of fatty acids into neutral lipids.
机译:在葡萄糖水平升高的情况下,分离的胰岛长时间暴露于超生理浓度的棕榈酸酯会降低胰岛素基因的表达。这项研究旨在确定这种现象是否与脂肪酸酯化成中性脂质的葡萄糖依赖性增加有关。在分离的大鼠胰岛中检测到了sn-甘油-3-磷酸酰基转移酶(GPAT),二酰基甘油酰基转移酶(DGAT)和激素敏感性脂肪酶(HSL)这三种脂质代谢的关键酶的基因表达。暴露于升高的葡萄糖和棕榈酸酯中72小时后,它们的表达水平没有受到影响。为了确定葡萄糖对棕榈酸酯诱导的中性脂质合成的影响,将分离的大鼠胰岛与痕量[ 14 C]棕榈酸酯(有或没有0.5 mmol / l未标记的棕榈酸酯)一起培养72小时。或16.7 mmol / l葡萄糖。葡萄糖增加了[ 14 C]棕榈酸酯向复杂脂质的掺入。外源棕榈酸酯的添加将脂质代谢导向中性脂质合成。结果,仅在高葡萄糖存在下,与升高的棕榈酸酯一起长期孵育后,中性脂质质量增加。高糖存在下棕榈酸酯增加中性脂质合成的能力在HIT细胞中是浓度依赖性的,并且与胰岛素mRNA水平成反比。脂肪酸线粒体β-氧化的抑制剂2-溴棕榈酸酯重现了棕榈酸酯对胰岛素mRNA水平的抑制作用。相反,未被代谢的棕榈酸酯甲酯和容易被氧化的中链脂肪酸辛酸酯不影响胰岛素基因表达,这表明脂肪酸对胰岛素基因表达的抑制需要激活酯化途径。这些结果表明,当胰岛长时间暴露于棕榈酸酯时,胰岛素基因表达的抑制与脂肪酸酯化成中性脂质的葡萄糖依赖性增加有关。

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