Military Nutrition Division, United States Army Research Institute of Environmental Medicine, 15 Kansas Street, Building 42, Natick, MA 01760, USA.
Nutrients. 2012 Jul;4(7):740-58. doi: 10.3390/nu4070740. Epub 2012 Jul 10.
A series of complex intracellular networks influence the regulation of skeletal muscle protein turnover. In recent years, studies have examined how cellular regulators of muscle protein turnover modulate metabolic mechanisms contributing to the loss, gain, or conservation of skeletal muscle mass. Exercise and amino acids both stimulate anabolic signaling potentially through several intracellular pathways including the mammalian target of rapamycin complex 1 and the mitogen activated protein kinase cell signaling cascades. As novel molecular regulators of muscle integrity continue to be explored, a contemporary analysis of the literature is required to understand the metabolic mechanisms by which contractile forces and amino acids affect cellular process that contribute to long-term adaptations and preservation of muscle mass. This article reviews the literature related to how exercise and amino acid availability affect cellular regulators of skeletal muscle mass, especially highlighting recent investigations that have identified mechanisms by which contractile forces and amino acids modulate muscle health. Furthermore, this review will explore integrated exercise and nutrition strategies that promote the maintenance of muscle health by optimizing exercise, and amino acid-induced cell signaling in aging adults susceptible to muscle loss.
一系列复杂的细胞内网络影响着骨骼肌蛋白质周转率的调节。近年来,研究已经研究了肌肉蛋白质周转率的细胞调节剂如何调节代谢机制,从而导致骨骼肌质量的损失、增加或保留。运动和氨基酸都通过几种细胞内途径刺激合成代谢信号,包括雷帕霉素复合物 1 和丝裂原激活蛋白激酶细胞信号转导途径。随着对肌肉完整性的新的分子调节剂的不断探索,需要对文献进行当代分析,以了解收缩力和氨基酸影响有助于长期适应和保留肌肉质量的细胞过程的代谢机制。本文综述了与运动和氨基酸可用性如何影响骨骼肌质量的细胞调节剂相关的文献,特别是强调了最近的研究结果,这些研究结果确定了收缩力和氨基酸调节肌肉健康的机制。此外,本综述将探讨通过优化运动和氨基酸诱导的细胞信号来促进肌肉健康的综合运动和营养策略,特别关注易发生肌肉损失的老年人群。