首页> 美国卫生研究院文献>Nutrients >Effects of Supplementation of Branched-Chain Amino Acids to Reduced-Protein Diet on Skeletal Muscle Protein Synthesis and Degradation in the Fed and Fasted States in a Piglet Model
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Effects of Supplementation of Branched-Chain Amino Acids to Reduced-Protein Diet on Skeletal Muscle Protein Synthesis and Degradation in the Fed and Fasted States in a Piglet Model

机译:补充低蛋白饮食的支链氨基酸对仔猪模型进食和禁食状态下骨骼肌蛋白质合成和降解的影响

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摘要

Supplementation of branched-chain amino acids (BCAA) has been demonstrated to promote skeletal muscle mass gain, but the mechanisms underlying this observation are still unknown. Since the regulation of muscle mass depends on a dynamic equilibrium (fasted losses–fed gains) in protein turnover, the aim of this study was to investigate the effects of BCAA supplementation on muscle protein synthesis and degradation in fed/fasted states and the related mechanisms. Fourteen 26- (Experiment 1) and 28-day-old (Experiment 2) piglets were fed reduced-protein diets without or with supplemental BCAA. After a four-week acclimation period, skeletal muscle mass and components of anabolic and catabolic signaling in muscle samples after overnight fasting were determined in Experiment 1. Pigs in Experiment 2 were implanted with carotid arterial, jugular venous, femoral arterial and venous catheters, and fed once hourly along with the intravenous infusion of NaH13CO3 for 2 h, followed by a 6-h infusion of [1-13C]leucine. Muscle leucine kinetics were measured using arteriovenous difference technique. The mass of most muscles was increased by BCAA supplementation. During feeding, BCAA supplementation increased leucine uptake, protein synthesis, protein degradation and net transamination. The greater increase in protein synthesis than in protein degradation resulted in elevated protein deposition. Protein synthesis was strongly and positively correlated with the intramuscular net production of α-ketoisocaproate (KIC) and protein degradation. Moreover, BCAA supplementation enhanced the fasted-state phosphorylation of protein translation initiation factors and inhibited the protein-degradation signaling of ubiquitin-proteasome and autophagy-lysosome systems. In conclusion, supplementation of BCAA to reduced-protein diet increases fed-state protein synthesis and inhibits fasted-state protein degradation, both of which could contribute to the elevation of skeletal muscle mass in piglets. The effect of BCAA supplementation on muscle protein synthesis is associated with the increase in protein degradation and KIC production in the fed state.
机译:已证明补充支链氨基酸(BCAA)可以促进骨骼肌质量的增加,但是这种观察所依据的机制仍然未知。由于肌肉质量的调节取决于蛋白质更新中的动态平衡(空腹损失-进食增加),因此本研究的目的是研究补充BCAA对进食/空腹状态下肌肉蛋白质合成和降解的影响以及相关机制。向14只26岁(实验1)和28天大(实验2)的仔猪喂饲低蛋白日粮,不添加或添加补充BCAA。经过四周的适应期后,在实验1中确定了禁食过夜后肌肉样品中骨骼肌的质量以及合成代谢和分解代谢信号的组成。在实验2的猪中植入了颈动脉,颈静脉,股动脉和静脉导管,以及每小时一次,同时静脉内注入NaH 13 CO3 2小时,然后6小时注入[1- 13 C]亮氨酸。使用动静脉差异技术测量肌肉亮氨酸动力学。补充BCAA可增加大多数肌肉的质量。在喂养期间,补充BCAA会增加亮氨酸的摄取,蛋白质合成,蛋白质降解和净转氨作用。与蛋白质降解相比,蛋白质合成的增加幅度更大,从而导致蛋白质沉积增加。蛋白质合成与α-酮异己酸(KIC)的肌内净产生和蛋白质降解密切相关。此外,BCAA补充增强了蛋白质翻译起始因子的禁食状态磷酸化,并抑制了泛素-蛋白酶体和自噬溶酶体系统的蛋白质降解信号。总之,在减少蛋白质的饮食中添加BCAA可以增加进食状态蛋白质的合成并抑制禁食状态蛋白质的降解,这两者都可能导致仔猪骨骼肌质量的增加。在进食状态下,补充BCAA对肌肉蛋白质合成的影响与蛋白质降解的增加和KIC的产生有关。

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