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小鼠骨骼肌中肌肉白细胞介素-6与禁食诱导的丙酮酸脱氢酶调节

Muscle interleukin-6 and fasting-induced PDH regulation in mouse skeletal muscle.

作者信息

Gudiksen Anders, Bertholdt Laerke, Vingborg Mikkel Birkkjaer, Hansen Henriette Watson, Ringholm Stine, Pilegaard Henriette

机构信息

Section for Cell Biology and Physiology, Department of Biology, University of Copenhagen, Copenhagen, Denmark.

Section for Cell Biology and Physiology, Department of Biology, University of Copenhagen, Copenhagen, Denmark

出版信息

Am J Physiol Endocrinol Metab. 2017 Mar 1;312(3):E204-E214. doi: 10.1152/ajpendo.00291.2016. Epub 2016 Dec 27.

Abstract

Fasting prompts a metabolic shift in substrate utilization from carbohydrate to predominant fat oxidation in skeletal muscle, and pyruvate dehydrogenase (PDH) is seen as a controlling link between the competitive oxidation of carbohydrate and fat during metabolic challenges like fasting. Interleukin (IL)-6 has been proposed to be released from muscle with concomitant effects on both glucose and fat utilization. The aim was to test the hypothesis that muscle IL-6 has a regulatory impact on fasting-induced suppression of skeletal muscle PDH. Skeletal muscle-specific IL-6 knockout (IL-6 MKO) mice and floxed littermate controls (control) were either fed or fasted for 6 or 18 h. Lack of muscle IL-6 elevated the respiratory exchange ratio in the fed and early fasting state, but not with prolonged fasting. Activity of PDH in the active form (PDHa) was higher in fed and fasted IL-6 MKO than in control mice at 18 h, but not at 6 h, whereas lack of muscle IL-6 did not prevent downregulation of PDHa activity in skeletal muscle or changes in plasma and muscle substrate levels in response to 18 h of fasting. Phosphorylation of three of four sites on PDH-E1α increased with 18 h of fasting, but was lower in IL-6 MKO mice than in control. In addition, both PDK4 mRNA and protein increased with 6 and 18 h of fasting in both genotypes, but PDK4 protein was lower in IL-6 MKO than in control. In conclusion, skeletal muscle IL-6 seems to regulate whole body substrate utilization in the fed, but not fasted, state and influence skeletal muscle PDHa activity in a circadian manner. However, skeletal muscle IL-6 is not required for maintaining metabolic flexibility in response to fasting.

摘要

禁食促使骨骼肌中底物利用发生代谢转变,从碳水化合物转向以脂肪氧化为主,丙酮酸脱氢酶(PDH)被视为在禁食等代谢挑战期间碳水化合物和脂肪竞争性氧化之间的控制环节。有人提出白细胞介素(IL)-6从肌肉释放,对葡萄糖和脂肪利用均有伴随作用。目的是检验肌肉IL-6对禁食诱导的骨骼肌PDH抑制有调节作用这一假说。骨骼肌特异性IL-6基因敲除(IL-6 MKO)小鼠和同窝对照小鼠(对照)分别进食或禁食6小时或18小时。缺乏肌肉IL-6会使进食和早期禁食状态下的呼吸交换率升高,但长时间禁食时则不然。在18小时时,进食和禁食的IL-6 MKO小鼠中活性形式的PDH(PDHa)活性高于对照小鼠,但6小时时并非如此,而缺乏肌肉IL-6并不能阻止骨骼肌中PDHa活性的下调或禁食18小时后血浆和肌肉底物水平的变化。PDH-E1α四个位点中的三个位点的磷酸化在禁食18小时时增加,但IL-6 MKO小鼠中的磷酸化低于对照小鼠。此外,两种基因型在禁食6小时和18小时时,PDK4 mRNA和蛋白均增加,但IL-6 MKO小鼠中的PDK4蛋白低于对照小鼠。总之,骨骼肌IL-6似乎在进食而非禁食状态下调节全身底物利用,并以昼夜节律方式影响骨骼肌PDHa活性。然而,响应禁食维持代谢灵活性并不需要骨骼肌IL-6。

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