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首页> 外文期刊>Proceedings of the Nutrition Society >Regulation of protein synthesis associated with skeletal muscle hypertrophy by insulin-, amino acid- and exercise-induced signalling
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Regulation of protein synthesis associated with skeletal muscle hypertrophy by insulin-, amino acid- and exercise-induced signalling

机译:胰岛素,氨基酸和运动诱导的信号传导调节与骨骼肌肥大相关的蛋白质合成

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摘要

Although insulin, amino acids and exercise individually activate multiple signal transduction pathways in skeletal muscle, one pathway, the phosphatidylinositol 3-kinase (PI3K)-mammalian target of rapamycin (mTOR) signalling pathway, is a target of all three. Activation of the PI3K-mTOR signal transduction pathway results in both acute (i.e. occurring in minutes to hours) and long-term (i.e. occurring in hours to days) up-regulation of protein synthesis through modulation of multiple steps involved in mediating the initiation of mRNA translation and ribosome biogenesis respectively. In addition, changes in gene expression through altered patterns of mRNA translation promote cell growth, which in turn promotes muscle hypertrophy. The focus of the present discussion is to review current knowledge concerning the mechanism(s) through which insulin, amino acids and resistance exercise act to activate the PI3K-mTOR signal transduction pathway and thereby enhance the rate of protein synthesis in muscle.
机译:尽管胰岛素,氨基酸和运动分别激活骨骼肌中的多个信号转导途径,但其中一个途径,即磷脂酰肌醇3激酶(PI3K)-哺乳动物雷帕霉素(mTOR)信号传导靶标,是这三个途径的靶标。 PI3K-mTOR信号转导途径的激活通过调节与介导启动蛋白有关的多个步骤,导致蛋白质合成的急性(即在数分钟至数小时内发生)和长期(即在数小时至数天内发生)上调。 mRNA翻译和核糖体生物发生。另外,通过改变mRNA翻译模式改变基因表达可促进细胞生长,进而促进肌肉肥大。本讨论的重点是回顾有关胰岛素,氨基酸和抗性锻炼通过其激活PI3K-mTOR信号转导途径从而提高肌肉中蛋白质合成速率的机制的当前知识。

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