School of Medicine, Deakin University, Geelong, Victoria 3217, Australia.
Clin Sci (Lond). 2010 Jan 26;118(8):507-18. doi: 10.1042/CS20090533.
Skeletal muscle phenotype plays a critical role in human performance and health, and skeletal muscle oxidative capacity is a key determinant of exercise tolerance. More recently, defective muscle oxidative metabolism has been implicated in a number of conditions associated with the metabolic syndrome, cardiovascular disease and muscle-wasting disorders. AMPK (AMP-activated protein kinase) is a critical regulator of cellular and organismal energy balance. AMPK has also emerged as a key regulator of skeletal muscle oxidative function, including metabolic enzyme expression, mitochondrial biogenesis and angiogenesis. AMPK mediates these processes primarily through alterations in gene expression. The present review examines the role of AMPK in skeletal muscle transcription and provides an overview of the known transcriptional substrates mediating the effects of AMPK on skeletal muscle phenotype.
骨骼肌表型在人类表现和健康中起着关键作用,而骨骼肌氧化能力是运动耐量的关键决定因素。最近,有缺陷的肌肉氧化代谢与许多与代谢综合征、心血管疾病和肌肉消耗性疾病相关的病症有关。AMPK(AMP 激活的蛋白激酶)是细胞和机体能量平衡的关键调节剂。AMPK 也已成为骨骼肌氧化功能的关键调节剂,包括代谢酶表达、线粒体生物发生和血管生成。AMPK 主要通过改变基因表达来介导这些过程。本综述检查了 AMPK 在骨骼肌转录中的作用,并概述了已知的转录底物,这些底物介导了 AMPK 对骨骼肌表型的影响。