Exercise‐induced changes in protein metabolism
- 1 February 1998
- journal article
- review article
- Published by Wiley in Acta Physiologica Scandinavica
- Vol. 162 (3) , 377-387
- https://doi.org/10.1046/j.1365-201x.1998.00306.x
Abstract
Exercise has a profound acute effect on protein metabolism. Whereas reports on whole body responses to exercise have varied results, it is generally agreed leucine oxidation is increased during exercise, thus indicating increased net protein breakdown. Following endurance exercise, whole body protein breakdown is generally reduced from resting levels, while following eccentric exercise, both whole body protein breakdown and leucine oxidation are increased. Whole body protein synthesis, on the other hand, is either increased or unchanged. Much of the disagreement in the results of studies on the response of whole body protein metabolism to exercise may be attributed to the limitations of the available methods. Even if the methodology accurately reflects whole body metabolism, this may not reflect changes in the protein metabolism of muscle. Although endurance exercise has not been studied, muscle protein breakdown is increased following resistance exercise. There is a concomitant, and qualitatively greater, increase in muscle protein synthesis following resistance exercise, which may last for as long as 48 h. Increased muscle protein synthesis is linked to increased intramuscular availability of amino acids, and thus, to increased blood flow and increased amino acid delivery to the muscle, as well as increased amino acid transport. Administration of exogenous amino acids after exercise increases protein synthesis while ameliorating protein breakdown, thus improving net muscle protein balance. While it is clear that muscle protein synthesis and protein breakdown increase in a qualitatively similar manner following exercise, the mechanisms of stimulation have yet to be determined. However, we propose that the intracellular availability of amino acids is the link between these processes.Keywords
This publication has 68 references indexed in Scilit:
- NG-monomethyl-L-arginine inhibits the blood flow but not the insulin-like response of forearm muscle to IGF- I: possible role of nitric oxide in muscle protein synthesis.Journal of Clinical Investigation, 1996
- The Time Course for Elevated Muscle Protein Synthesis Following Heavy Resistance ExerciseCanadian Journal of Applied Physiology, 1995
- Effect of branched‐chain amino acid supplementation on the exercise‐induced change in aromatic amino acid concentration in human muscleActa Physiologica Scandinavica, 1992
- Harry M. Vars Research Award: A New Model to Determine in Vivo the Relationship Between Amino Acid Transmembrane Transport and Protein Kinetics in MuscleJournal of Parenteral and Enteral Nutrition, 1992
- Stress Hormone Response to Exercise in Elite Female Distance Runners*International Journal of Sports Medicine, 1987
- Effect of physiologic hyperinsulinemia on skeletal muscle protein synthesis and breakdown in man.Journal of Clinical Investigation, 1987
- Effect of Alanine Infusion on Glucose and Urea Production in ManJournal of Parenteral and Enteral Nutrition, 1987
- Effect of swimming on protein degradation: 3-methylhistidine and creatinine excretionBiochemical Medicine, 1985
- Myofibrillar Damage Following Intense Eccentric Exercise in ManInternational Journal of Sports Medicine, 1983
- Effect of exercise on protein degradation: 3-Methylhistidine and creatinine excretionBiochemical Medicine, 1983