Protein synthesis is stimulated by resistance exercise and intake of amino acids, in particular leucine. Moreover, activation of mammalian target of rapamycin complex 1 (mTORC1) signaling by leucine is potentiated by the presence of other essential amino acids (EAA). However, the contribution of the branched-chain amino acids (BCAA) to this effect is yet unknown. Here we compare the stimulatory role of leucine, BCAA, and EAA ingestion on anabolic signaling following exercise. Accordingly, eight trained volunteers completed four sessions of resistance exercise during which they ingested either placebo, leucine, BCAA, or EAA (including the BCAA) in random order. Muscle biopsies were taken at rest, immediately after exercise, and following 90 ...
Resistance exercise can effectively result in an increase in muscle mass, or hypertrophy, which gene...
Leucine is known to stimulate muscle protein synthesis and anabolism. However, evidence for the effi...
The mammalian/mechanistic target of rapamycin complex 1 (mTORC1) signaling pathway appears to be the...
Protein synthesis is stimulated by resistance exercise and intake of amino acids, in particular leuc...
The purpose of the study was to investigate the specific effect of leucine on mTORC1 signalling and ...
Skeletal muscle adapts differently to specific modes of exercise, where resistance training results ...
The ingestion of intact protein or essential amino acids (EAA) stimulates mechanistic target of rapa...
Objective: Exercise enhances the sensitivity of mammalian target of rapamycin complex 1 (mTORC1) to ...
Human muscles contain a mixture of type I and type II fibers with different contractile and metaboli...
Skeletal muscle is composed of myofibers surrounded by an extracellular matrix (ECM) primarily conta...
Resistance exercise disturbs skeletal muscle homeostasis leading to activation of catabolic and anab...
Resistance exercise disturbs skeletal muscle homeostasis leading to activation of catabolic and anab...
Objective Human muscle consists of a mixture of fibres with different contractile and metabolic prop...
Skeletal muscle is a highly plastic tissue which has the ability to adapt to various forms of extern...
Leucine ingestion reportedly activates the mTOR pathway in skeletal muscle, contributing to a hypert...
Resistance exercise can effectively result in an increase in muscle mass, or hypertrophy, which gene...
Leucine is known to stimulate muscle protein synthesis and anabolism. However, evidence for the effi...
The mammalian/mechanistic target of rapamycin complex 1 (mTORC1) signaling pathway appears to be the...
Protein synthesis is stimulated by resistance exercise and intake of amino acids, in particular leuc...
The purpose of the study was to investigate the specific effect of leucine on mTORC1 signalling and ...
Skeletal muscle adapts differently to specific modes of exercise, where resistance training results ...
The ingestion of intact protein or essential amino acids (EAA) stimulates mechanistic target of rapa...
Objective: Exercise enhances the sensitivity of mammalian target of rapamycin complex 1 (mTORC1) to ...
Human muscles contain a mixture of type I and type II fibers with different contractile and metaboli...
Skeletal muscle is composed of myofibers surrounded by an extracellular matrix (ECM) primarily conta...
Resistance exercise disturbs skeletal muscle homeostasis leading to activation of catabolic and anab...
Resistance exercise disturbs skeletal muscle homeostasis leading to activation of catabolic and anab...
Objective Human muscle consists of a mixture of fibres with different contractile and metabolic prop...
Skeletal muscle is a highly plastic tissue which has the ability to adapt to various forms of extern...
Leucine ingestion reportedly activates the mTOR pathway in skeletal muscle, contributing to a hypert...
Resistance exercise can effectively result in an increase in muscle mass, or hypertrophy, which gene...
Leucine is known to stimulate muscle protein synthesis and anabolism. However, evidence for the effi...
The mammalian/mechanistic target of rapamycin complex 1 (mTORC1) signaling pathway appears to be the...