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首页> 外文期刊>American Journal of Physiology >Effects of prolonged fasting on AMPK signaling, gene expression, and mitochondrial respiratory chain content in skeletal muscle from lean and obese individuals
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Effects of prolonged fasting on AMPK signaling, gene expression, and mitochondrial respiratory chain content in skeletal muscle from lean and obese individuals

机译:长期禁食对瘦弱和肥胖个体骨骼肌中AMPK信号转导,基因表达和线粒体呼吸链含量的影响

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摘要

Obesity in humans is often associated with metabolic inflexibility, but the underlying molecular mechanisms remain incompletely understood. The aim of the present study was to investigate how adaptation to prolonged fasting affects energyutrient-sensing pathways and metabolic gene expression in skeletal muscle from lean and obese individuals. Twelve lean and 14 nondiabetic obese subjects were fasted for 48 h. Whole body glucose/ lipid oxidation rates were determined by indirect calorimetry, and blood and skeletal muscle biopsies were collected and analyzed. In response to fasting, body weight loss was similar in both groups, but the decrease in plasma insulin and leptin and the concomitant increase in growth hormone were significantly attenuated in obese subjects. The fasting-induced shift from glucose toward lipid oxidation was also severely blunted. At the molecular level, the expression of insulin receptor-β (IRβ) was lower in skeletal muscle from obese subjects at baseline, whereas the fasting-induced reductions in insulin signaling were similar in both groups. The protein expression of mitochondrial respiratory chain components, although not modified by fasting, was significantly reduced in obese subjects. Some minor differences in metabolic gene expression were observed at baseline and in response to fasting. Surprisingly, fasting reduced AMPK activity in lean but not in obese subjects, whereas the expression of AMPK subunits was not affected. We conclude that whole body metabolic inflexibility in response to prolonged fasting in obese humans is associated with lower skeletal muscle IRβ and mitochondrial respiratory chain content as well as a blunted decline of AMPK activity.
机译:人类肥胖症通常与新陈代谢缺乏弹性有关,但其潜在的分子机制仍未完全了解。本研究的目的是研究对长期禁食的适应如何影响瘦弱和肥胖个体骨骼肌的能量/营养传感途径和代谢基因表达。 12名瘦人和14名非糖尿病肥胖受试者禁食48小时。通过间接量热法测定全身葡萄糖/脂质氧化率,并收集和分析血液和骨骼肌活检。响应禁食,两组的体重减轻相似,但肥胖受试者的血浆胰岛素和瘦素减少以及伴随的生长激素增加被显着减弱。空腹诱导的从葡萄糖向脂质氧化的转变也被严重削弱。在分子水平上,基线时肥胖受试者骨骼肌中胰岛素受体-β(IRβ)的表达较低,而空腹诱导的胰岛素信号减少在两组中相似。线粒体呼吸链成分的蛋白质表达虽然没有被禁食改变,但是在肥胖受试者中却明显降低。在基线和对禁食的反应中观察到代谢基因表达的一些细微差异。出人意料的是,禁食降低了瘦人的AMPK活性,但没有降低肥胖受试者的AMPK活性,而AMPK亚基的表达未受影响。我们得出结论,肥胖人长期禁食后全身代谢缺乏适应性,与骨骼肌IRβ和线粒体呼吸链含量降低以及AMPK活性减退有关。

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