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首页> 外文期刊>The Journal of Physiology >Influence of pre-exercise muscle glycogen content on exercise-induced transcriptional regulation of metabolic genes.
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Influence of pre-exercise muscle glycogen content on exercise-induced transcriptional regulation of metabolic genes.

机译:运动前肌肉糖原含量对运动引起的代谢基因转录调控的影响。

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摘要

Transcription of metabolic genes is transiently induced during recovery from exercise in skeletal muscle of humans. To determine whether pre-exercise muscle glycogen content influences the magnitude and/or duration of this adaptive response, six male subjects performed one-legged cycling exercise to lower muscle glycogen content in one leg and then, the following day, completed 2.5 h low intensity two-legged cycling exercise. Nuclei and mRNA were isolated from biopsies obtained from the vastus lateralis muscle of the control and reduced glycogen (pre-exercise glycogen = 609 +/- 47 and 337 +/- 33 mmol kg(-1) dry weight, respectively) legs before and after 0, 2 and 5 h of recovery. Exercise induced a significant (P < 0.05) increase (2- to 3-fold) in transcription of the pyruvate dehydrogenase kinase 4 (PDK4) and uncoupling protein 3 (UCP3) genes in the reduced glycogen leg only. Although PDK4, lipoprotein lipase (LPL) and hexokinase II (HKII) mRNA were elevated in the reduced glycogen leg before exercise, no consistent difference was found between the two legs in response to exercise. In a second study, six subjects completed two trials (separated by 2 weeks) consisting of 3 h of two-legged knee extensor exercise with either control (398 +/- 52 mmol kg(-1) dry weight) or low (240 +/- 38 mmol kg(-1) dry weight) pre-exercise muscle glycogen. Exercise induced a significantly greater increase in PDK4 transcription in the low glycogen (> 6-fold) than in the control (< 3-fold) trial. Induction of PDK4 and UCP3 mRNA in response to exercise was also signficantly higher in the low glycogen (11.4- and 3.5-fold, respectively) than in the control (5.0- and 1.7-fold, respectively) trial. These data indicate that low muscle glycogen content enhances the transcriptional activation of some metabolic genes in response to exercise, raising the possibility that signalling mechanisms sensitive to glycogen content and/or FFA availability may be linked to the transcriptional control of exercise-responsive genes.
机译:在人体骨骼肌从运动中恢复期间,代谢基因的转录是短暂诱导的。为了确定运动前的肌肉糖原含量是否影响这种适应性反应的幅度和/或持续时间,六名男性受试者进行了单腿骑自行车运动以降低一只腿的肌肉糖原含量,然后在第二天完成了2.5小时的低强度训练。两腿骑自行车运动。从对照的股外侧肌获得的活检组织中分离核和mRNA,并降低腿前和腿后糖原(运动前的糖原分别为609 +/- 47和337 +/- 33 mmol kg(-1)干重)。恢复0、2和5小时后。运动仅在糖原减少的腿中引起丙酮酸脱氢酶激酶4(PDK4)和解偶联蛋白3(UCP3)基因的转录显着增加(P <0.05)(2-3倍)。尽管PDK4,脂蛋白脂肪酶(LPL)和己糖激酶II(HKII)mRNA在运动前的糖原减少的腿中升高,但在运动响应的两条腿之间未发现一致的差异。在第二项研究中,六名受试者完成了两项试验(相隔2周),包括3个小时的两腿伸膝肌运动,其中对照组(398 +/- 52 mmol kg(-1)干重)或低(240 + /-38 mmol kg(-1)干重)运动前的肌肉糖原。在低糖原(> 6倍)中,运动诱导的PDK4转录明显高于对照(<3倍)试验。在低糖原(分别为11.4和3.5倍)中,对运动反应的PDK4和UCP3 mRNA的诱导也显着高于对照(分别为5.0和1.7倍)试验。这些数据表明,低肌肉糖原含量可增强某些代谢基因响应运动的转录激活,从而增加了对糖原含量和/或FFA可用性敏感的信号传导机制可能与运动反应基因的转录控制相关的可能性。

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