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糖原可用性降低与收缩的人体骨骼肌中AMPKα2活性增加、细胞核内AMPKα2蛋白丰度增加以及GLUT4 mRNA表达增加有关。

Reduced glycogen availability is associated with increased AMPKalpha2 activity, nuclear AMPKalpha2 protein abundance, and GLUT4 mRNA expression in contracting human skeletal muscle.

作者信息

Steinberg Gregory R, Watt Matthew J, McGee Sean L, Chan Stanley, Hargreaves Mark, Febbraio Mark A, Stapleton David, Kemp Bruce E

机构信息

Vincent's Institute and Department of Medicine, University of Melbourne, Fitzroy, Victoria, Australia.

出版信息

Appl Physiol Nutr Metab. 2006 Jun;31(3):302-12. doi: 10.1139/h06-003.

Abstract

Glycogen availability can influence glucose transporter 4 (GLUT4) expression in skeletal muscle through unknown mechanisms. The multisubstrate enzyme AMP-activated protein kinase (AMPK) has also been shown to play an important role in the regulation of GLUT4 expression in skeletal muscle. During contraction, AMPK alpha2 translocates to the nucleus and the activity of this AMPK isoform is enhanced when skeletal muscle glycogen is low. In this study, we investigated if decreased pre-exercise muscle glycogen levels and increased AMPK alpha2 activity reduced the association of AMPK with glycogen and increased AMPK alpha2 translocation to the nucleus and GLUT4 mRNA expression following exercise. Seven males performed 60 min of exercise at approximately 70% VO(2) (peak) on 2 occasions: either with normal (control) or low (LG) carbohydrate pre-exercise muscle glycogen content. Muscle samples were obtained by needle biopsy before and after exercise. Low muscle glycogen was associated with elevated AMPK alpha2 activity and acetyl-CoA carboxylase beta phosphorylation, increased translocation of AMPK alpha2 to the nucleus, and increased GLUT4 mRNA. Transfection of primary human myotubes with a constitutively active AMPK adenovirus also stimulated GLUT4 mRNA, providing direct evidence of a role of AMPK in regulating GLUT4 expression. We suggest that increased activation of AMPK alpha2 under conditions of low muscle glycogen enhances AMPK alpha2 nuclear translocation and increases GLUT4 mRNA expression in response to exercise in human skeletal muscle.

摘要

糖原可用性可通过未知机制影响骨骼肌中葡萄糖转运蛋白4(GLUT4)的表达。多底物酶AMP激活的蛋白激酶(AMPK)也已被证明在调节骨骼肌中GLUT4表达方面发挥重要作用。在收缩过程中,AMPKα2易位至细胞核,当骨骼肌糖原含量较低时,这种AMPK同工型的活性会增强。在本研究中,我们调查了运动前肌肉糖原水平降低和AMPKα2活性增加是否会减少运动后AMPK与糖原的结合,增加AMPKα2向细胞核的易位以及GLUT4 mRNA表达。七名男性在两种情况下进行了约60分钟、强度约为70%最大摄氧量(峰值)的运动:运动前肌肉糖原含量正常(对照)或较低(LG)。在运动前后通过肌肉活检获取肌肉样本。低肌肉糖原与AMPKα2活性升高、乙酰辅酶A羧化酶β磷酸化增加、AMPKα2向细胞核的易位增加以及GLUT4 mRNA增加有关。用组成型活性AMPK腺病毒转染原代人肌管也刺激了GLUT4 mRNA,为AMPK在调节GLUT4表达中的作用提供了直接证据。我们认为,在低肌肉糖原条件下AMPKα2激活增加会增强AMPKα2的核易位,并增加人骨骼肌运动后GLUT4 mRNA表达。

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