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在抗阻运动后,必需氨基酸和碳水化合物的摄入引起的蛋白质合成反应中,肌肉蛋白分解的作用较小。

Muscle protein breakdown has a minor role in the protein anabolic response to essential amino acid and carbohydrate intake following resistance exercise.

机构信息

Univ. of Texas Medical Branch, Dept. of Physical Therapy, Galveston, TX 77555-1144, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2010 Aug;299(2):R533-40. doi: 10.1152/ajpregu.00077.2010. Epub 2010 Jun 2.

Abstract

Muscle protein breakdown (MPB) is increased following resistance exercise, but ingestion of carbohydrate during postexercise recovery can decrease MPB with no effect on muscle protein synthesis (MPS). We sought to determine whether a combination of essential amino acids (EAA) with low carbohydrate or high carbohydrate could effectively reduce MPB following resistance exercise and improve muscle protein net balance (NB). We hypothesized that higher levels of carbohydrate and resulting increases in circulating insulin would inhibit MPB and associated signaling, resulting in augmented NB. Thirteen male subjects were assigned to one of two groups receiving equivalent amounts of EAA (approximately 20 g) but differing carbohydrate levels (low = 30, high = 90 g). Groups ingested nutrients 1 h after an acute bout of leg resistance exercise. Leg phenylalanine kinetics (e.g., MPB, MPS, NB), signaling proteins, and mRNA expression were assessed on successive muscle biopsies using stable isotopic techniques, immunoblotting, and real-time quantitative PCR, respectively. MPB tended to decrease (P < 0.1) and MPS increased (P < 0.05) similarly in both groups following nutrient ingestion. No group differences were observed, but muscle ring finger 1 (MuRF1) protein content and MuRF1 mRNA expression increased following resistance exercise and remained elevated following nutrient ingestion, while autophagy marker (light-chain 3B-II) decreased after nutrient ingestion (P < 0.05). Forkhead box-O3a phosphorylation, total muscle atrophy F-box (MAFbx) protein, and MAFbx and caspase-3 mRNA expression were unchanged. We conclude that the enhanced muscle protein anabolic response detected when EAA+carbohydrate are ingested postresistance exercise is primarily due to an increase in MPS with minor changes in MPB, regardless of carbohydrate dose or circulating insulin level.

摘要

肌肉蛋白分解(MPB)在抗阻运动后增加,但在运动后恢复期间摄入碳水化合物可以减少 MPB,而对肌肉蛋白合成(MPS)没有影响。我们试图确定在抗阻运动后,必需氨基酸(EAA)与低碳水化合物或高碳水化合物的组合是否能有效地减少 MPB 并改善肌肉蛋白净平衡(NB)。我们假设,较高水平的碳水化合物和随之而来的胰岛素增加会抑制 MPB 及其相关信号转导,从而增加 NB。13 名男性受试者被分配到两组中的一组,两组均摄入等量的 EAA(约 20 克),但碳水化合物水平不同(低=30 克,高=90 克)。两组在急性腿部抗阻运动后 1 小时摄入营养素。使用稳定同位素技术、免疫印迹和实时定量 PCR 分别评估腿部苯丙氨酸动力学(如 MPB、MPS、NB)、信号蛋白和 mRNA 表达。两组在摄入营养素后,MPB 均有下降趋势(P<0.1),MPS 均增加(P<0.05)。但未观察到组间差异,然而,抗阻运动后 MuRF1 蛋白含量和 MuRF1 mRNA 表达增加,且在摄入营养素后仍保持升高,而自噬标志物(LC3B-II)在摄入营养素后下降(P<0.05)。叉头框蛋白 O3a 磷酸化、总肌萎缩 F 盒(MAFbx)蛋白以及 MAFbx 和 caspase-3 mRNA 表达不变。我们的结论是,在抗阻运动后摄入 EAA+碳水化合物时检测到的增强的肌肉蛋白合成反应主要是由于 MPS 的增加,而 MPB 的变化较小,无论碳水化合物剂量或循环胰岛素水平如何。

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