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Effect of age on basal muscle protein synthesis and mTORC1 signaling in a large cohort of young and older men and women

机译:年龄对一大批男女老少的基础肌蛋白合成和mTORC1信号的影响

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摘要

The rate of muscle loss with aging is higher in men than women. However, women have smaller muscles throughout the adult life. Protein content is a major determinant of skeletal muscle size. This study was designed to determine if age and sex differentially impact basal muscle protein synthesis and mammalian/mechanistic Target Of Rapamycin Complex 1 (mTORC1) signaling. We performed a secondary data analysis on a cohort of 215 healthy, non-obese (BMI <30 kg·m−2) young (18–40 y; 74 men, 52 women) and older (60–87 y; 57 men, 32 women) adults. The database contained information on physical characteristics, basal muscle protein fractional synthetic rate (FSR; n=215; stable isotope methodology) and mTORC1 signaling (n=125, Western blotting). FSR and mTORC1 signaling were measured at rest and after an overnight fast. mTORC1 and S6K1 phosphorylation were higher (P<0.05) in older subjects with no sex differences. However, there were no age or sex differences or interaction for muscle FSR (p>0.05). Body mass index, fat free mass, or body fat were not significant covariates and did not influence the results. We conclude that age and sex do not influence basal muscle protein synthesis. However, basal mTORC1 hyperphosphorylation in the elderly may contribute to insulin resistance and the age-related anabolic resistance of skeletal muscle protein metabolism to nutrition and exercise.
机译:随着年龄的增长,男性的肌肉损失率要高于女性。但是,女性在整个成年期的肌肉较小。蛋白质含量是骨骼肌大小的主要决定因素。本研究旨在确定年龄和性别是否会影响基础肌肉蛋白合成和雷帕霉素复合物1(mTORC1)信号的哺乳动物/机制靶标。我们对215名健康,非肥胖(BMI <30 kg·m -2 ),年轻(18-40岁; 74名男性,52名女性)和年龄较大(60岁)的队列进行了二次数据分析。 – 87岁; 57名男性,32名女性)成人。该数据库包含有关物理特征,基础肌肉蛋白分数合成速率(FSR; n = 215;稳定同位素方法)和mTORC1信号传导(n = 125,蛋白质印迹)的信息。 FSR和mTORC1信号传导在休息和禁食过夜后进行测量。在没有性别差异的老年受试者中,mTORC1和S6K1的磷酸化较高(P <0.05)。但是,肌肉FSR没有年龄或性别差异或相互作用(p> 0.05)。体重指数,无脂肪体重或体脂不是显着的协变量,也不会影响结果。我们得出结论,年龄和性别不会影响基础肌肉蛋白质的合成。但是,老年人的基础mTORC1过度磷酸化可能导致胰岛素抵抗以及骨骼肌蛋白质代谢对营养和运动的年龄相关合成代谢抵抗。

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