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蛋白质代谢与耐力运动

Protein metabolism and endurance exercise.

作者信息

Gibala Martin J

机构信息

Department of Kinesiology, McMaster University, Hamilton, Ontario, Canada.

出版信息

Sports Med. 2007;37(4-5):337-40. doi: 10.2165/00007256-200737040-00016.

Abstract

Prolonged endurance exercise stimulates whole-body protein turnover (synthesis and degradation) but it remains contentious whether this translates into an increased net protein oxidation or dietary requirement for protein. Skeletal muscle is the major energy consumer during exercise and the oxidation of branched-chain amino acids (BCAA) is increased several-fold, suggesting an increased requirement for fuel. Increased BCAA oxidation has been proposed to impair aerobic energy provision during prolonged exercise, but there is little evidence to support this theory. Endurance training blunts the acute exercise-induced increase in whole-body protein turnover and skeletal BCAA oxidation at a given work intensity. However, training also increases the maximal capacity for skeletal muscle BCAA oxidation, as evidenced by a higher maximal activity of the rate-determining enzyme branched-chain oxo acid dehydrogenase. Exercise-induced changes in protein metabolism are affected by nutritional status, with high carbohydrate availability (as typically practiced by endurance athletes) generally associated with reduced net protein utilisation. Ingestion of protein with carbohydrate improves net protein balance during exercise and recovery compared with carbohydrate alone, but it remains to be determined whether this practice facilitates the adaptive response to chronic training.

摘要

长时间耐力运动可刺激全身蛋白质周转(合成与降解),但这种情况是否会转化为净蛋白质氧化增加或蛋白质的饮食需求增加仍存在争议。骨骼肌是运动过程中的主要能量消耗者,支链氨基酸(BCAA)的氧化增加了几倍,这表明对燃料的需求增加。有人提出,BCAA氧化增加会损害长时间运动期间的有氧能量供应,但几乎没有证据支持这一理论。在给定的工作强度下,耐力训练可减弱急性运动引起的全身蛋白质周转和骨骼肌BCAA氧化的增加。然而,训练也会增加骨骼肌BCAA氧化的最大能力,这由限速酶支链氧代酸脱氢酶的更高最大活性证明。运动引起的蛋白质代谢变化受营养状况影响,高碳水化合物供应(耐力运动员通常采用的方式)通常与净蛋白质利用率降低有关。与单独摄入碳水化合物相比,摄入蛋白质与碳水化合物可改善运动和恢复期间的净蛋白质平衡,但这种做法是否有助于对长期训练的适应性反应仍有待确定。

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