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Effects of dynamic exercise intensity on the activation of hormone-sensitive lipase in human skeletal muscle

机译:运动强度对人体骨骼肌激素敏感性脂肪酶活化的影响

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摘要

It has been proposed that hormone-sensitive lipase (HSL) regulates intramuscular triacylglycerol hydrolysis in skeletal muscle. The primary purpose of this study was to examine the early activation of HSL and the changes in the putative intramuscular and hormonal regulators of HSL activity at various aerobic exercise intensities. Eight male subjects cycled for 10 min at power outputs corresponding to 30, 60 and 90 % peak oxygen uptake (V̇O2,peak). Muscle samples were obtained at rest and following 1 and 10 min of exercise. Intramuscular triacylglycerol (mean ±s.e.m.: 24.3 ± 2.3 mmol (kg dry mass (DM))-1), long-chain fatty acyl CoA (13.9 ± 1.4 µmol (kg DM)-1) and HSL activity (1.87 ± 0.07 mmol min-1 (kg DM)-1)) were not different between trials at rest. HSL activity increased at 1 min of exercise at 30 and 60 % V̇O2,peak, and to a greater extent at 90 % V̇O2,peak. HSL activity remained elevated after 10 min of exercise at 30 and 60 % V̇O2,peak, and decreased at 90 % V̇O2,peak from the rates observed at 1 min (1 min: 3.41 ± 0.3 mmol min-1 (kg DM)-1; 10 min: 2.92 ± 0.26 mmol min-1 (kg DM)-1), P < 0.05). There were no effects of exercise power output or time on long-chain fatty acyl CoA content. At 90 % V̇O2,peak, skeletal muscle contents of ATP and phosphocreatine were decreased (P < 0.05), and free ADP and free AMP were increased (P < 0.05) during exercise. No changes in these metabolites occurred at 30 % V̇O2,peak and only modest changes were observed at 60 % V̇O2,peak. Plasma adrenaline increased (P < 0.05) during exercise at 90 % V̇O2,peak only. These data suggest that a factor related to the onset of exercise (e.g. Ca2+) activates HSL early in exercise. Given the activation of HSL early in exercise, at a time when intramuscular triacylglycerol hydrolysis and fat oxidation are considered to be negligible, we propose that the control of intramuscular triacylglycerol hydrolysis is not solely related to the level of HSL activation, but must also be regulated by postactivational factors.
机译:已经提出,激素敏感性脂肪酶(HSL)调节骨骼肌中肌内三酰基甘油的水解。这项研究的主要目的是研究在各种有氧运动强度下HSL的早期激活以及HSL活性的肌肉和激素调节剂的变化。八名男性受试者在相当于30%,60%和90%峰值摄氧量(V̇O2,峰值)的功率输出下循环10分钟。在休息和运动1和10分钟后获得肌肉样本。肌内三酰甘油(平均值±sem:24.3±2.3 mmol(kg干质量(DM)) -1 ),长链脂肪酰基CoA(13.9±1.4 µmol(kg DM) -1 )和HSL活性(1.87±0.07 mmol min -1 (kg DM) -1 ))在静息试验之间没有差异。在30%和60%V = O2峰值时,运动1分钟时HSL活性增加,而在90%V = O2峰值时,HSL活性更大程度地增加。在30%和60%V̇O2峰值下运动10分钟后,HSL活性仍保持升高,而在90%V̇O2峰值下运动时,HSL活性从1分钟时观察到的速率下降(1分钟:3.41±0.3 mmol min -1 (kg DM) -1 ; 10分钟:2.92±0.26 mmol min -1 (kg DM) -1 ),P <0.05 )。运动能力输出或时间对长链脂肪酰基CoA含量没有影响。在90%V = O2时,运动期间ATP和磷酸肌酸的骨骼肌含量降低(P <0.05),游离ADP和游离AMP升高(P <0.05)。在30%V 30O2,峰值下,这些代谢产物没有变化,而在60%V̇O2,峰值下,仅观察到了适度的变化。在90%V̇O2下运动时血浆肾上腺素升高(P <0.05),仅峰值。这些数据表明,与运动开始有关的因素(例如Ca 2 + )可在运动早期激活HSL。考虑到运动初期HSL的激活,在认为肌内三酰基甘油水解和脂肪氧化可以忽略不计的时候,我们建议控制肌内三酰基甘油水解不仅与HSL激活水平有关,还必须对其进行调节受激活后因素的影响。

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