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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Direct evidence for leptin-induced lipid oxidation independent of long-form leptin receptor.
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Direct evidence for leptin-induced lipid oxidation independent of long-form leptin receptor.

机译:瘦素诱导的脂质氧化的直接证据独立于长型瘦素受体。

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Leptin administration has been shown to enhance muscle lipid oxidation in relation to the energy expenditure. Both long-form (Ob-R(L)) and short-form leptin receptors (Ob-R(S)) are expressed in skeletal muscle, but the role of Ob-R(S) is unclear. In the present study, the role of Ob-R(S) in leptin-induced lipid oxidation in skeletal muscles was investigated using primary murine myotubes from m/m and db/db mice. Primary myotubes were treated with leptin (0.1, 1, 10, 100nM) for 24h. Lipid oxidation was determined by (14)CO(2) production rate from [1-(14)C] palmitate. Leptin was found to increase lipid oxidation in a dose- and time-dependent manner in db/db myotubes as well as in m/m myotubes. Leptin significantly increased phosphorylation of JAK2 and STAT3 in both types of myotube. Leptin-induced lipid oxidation was abolished by STAT3 siRNA. To investigate the mechanism underlying leptin-induced lipid oxidation, the effects of pharmacological inhibitors were examined. JAK2 or p38 MAPK inhibitor suppressed leptin-induced lipid oxidation and decreased STAT3 phosphorylation in both types of myotube, respectively. Leptin significantly increased phosphorylation of p38 MAPK, and leptin-induced lipid oxidation was abolished by treatment with p38 MAPK siRNA in both types of myotube. These results suggest that leptin induces lipid oxidation in skeletal muscle through the JAK2/p38 MAPK/STAT3 signaling pathway via not only Ob-R(L) but also Ob-R(S).
机译:瘦素给药已显示出与能量消耗有关的增强肌肉脂质氧化的作用。长型(Ob-R(L))和短型瘦素受体(Ob-R(S))均在骨骼肌中表达,但尚不清楚Ob-R(S)的作用。在本研究中,使用来自m / m和db / db小鼠的原代鼠肌管,研究了Ob-R(S)在瘦素诱导的骨骼肌脂质氧化中的作用。用瘦素(0.1、1、10、100nM)将原代肌管处理24小时。脂质氧化是由[1-(14)C]棕榈酸酯的(14)CO(2)生成速率确定的。发现瘦蛋白在db / db肌管以及m / m肌管中以剂量和时间依赖性方式增加脂质氧化。瘦素在两种类型的肌管中均显着增加了JAK2和STAT3的磷酸化。 STAT3 siRNA消除了瘦素诱导的脂质氧化。为了研究瘦蛋白诱导的脂质氧化的潜在机制,研究了药理抑制剂的作用。在两种类型的肌管中,JAK2或p38 MAPK抑制剂分别抑制瘦素诱导的脂质氧化并降低STAT3磷酸化。瘦素显着增加了p38 MAPK的磷酸化,并且通过在两种类型的肌管中用p38 MAPK siRNA处理都消除了瘦素诱导的脂质氧化。这些结果表明瘦蛋白不仅通过Ob-R(L)而且通过Ob-R(S)通过JAK2 / p38 MAPK / STAT3信号传导途径诱导骨骼肌脂质氧化。

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