Akt signalling through GSK‐3β, mTOR and Foxo1 is involved in human skeletal muscle hypertrophy and atrophy

Сигналинг Akt через GSK-3β, mTOR и Foxo1 участвует в гипертрофии и атрофии скелетных мышц человека
Bertrand Léger, Romain Cartoni, Manu Praz, Séverine Lamon, O. Dériaz, Antoinette Crettenand, Charles Gobelet, Paul Rohmer, M. Konzelmann, François Lüthi, Aaron P. Russell
2006-08-17

Akt signalingFoxo1GSK-3βmTORskeletal muscle hypertrophy and atrophy
Skeletal muscle size is tightly regulated by the synergy between anabolic and catabolic signalling pathways which, in humans, have not been well characterized. Akt has been suggested to play a pivotal role in the regulation of skeletal muscle hypertrophy and atrophy in rodents and cells. Here we measured the amount of phospho-Akt and several of its downstream anabolic targets (glycogen synthase kinase-3beta (GSK-3beta), mTOR, p70(s6k) and 4E-BP1) and catabolic targets (Foxo1, Foxo3, atrogin-1 and MuRF1). All measurements were performed in human quadriceps muscle biopsies taken after 8 weeks of both hypertrophy-stimulating resistance training and atrophy-stimulating de-training. Following resistance training a muscle hypertrophy ( approximately 10%) and an increase in phospho-Akt, phospho-GSK-3beta and phospho-mTOR protein content were observed. This was paralleled by a decrease in Foxo1 nuclear protein content. Following the de-training period a muscle atrophy (5%), relative to the post-training muscle size, a decrease in phospho-Akt and GSK-3beta and an increase in Foxo1 were observed. Atrogin-1 and MuRF1 increased after the hypertrophy and decreased after the atrophy phases. We demonstrate, for the first time in human skeletal muscle, that the regulation of Akt and its downstream signalling pathways GSK-3beta, mTOR and Foxo1 are associated with both the skeletal muscle hypertrophy and atrophy processes.
1
Atrogin-1 and MuRF1 increased after resistance training but decreased after detraining, indicating phase-dependent regulation of these catabolic markers.
2
Eight weeks of detraining caused 5% muscle atrophy relative to post-training size, decreased phospho-Akt and phospho-GSK-3β, and increased Foxo1.
3
Eight weeks of resistance training produced approximately 10% human quadriceps muscle hypertrophy.
4
Hypertrophy was accompanied by increased phospho-Akt, phospho-GSK-3β, and phospho-mTOR, together with reduced nuclear Foxo1 protein.
5
The measured p70S6K, 4E-BP1, and Foxo3 signaling targets were evaluated, but specific changes for them were not reported in the abstract.
6
The study provides the first human skeletal-muscle evidence associating Akt signaling through GSK-3β, mTOR, and Foxo1 with both hypertrophy and atrophy.

Human quadriceps skeletal muscle during resistance-training-induced hypertrophy and detraining-induced atrophy

Akt signalling through GSK-3β, mTOR and Foxo1 associated with the regulation of skeletal muscle hypertrophy and atrophy

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2006-08-17
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Bertrand Léger
Romain Cartoni
Manu Praz
Séverine Lamon
O. Dériaz
Antoinette Crettenand
Charles Gobelet
Paul Rohmer
M. Konzelmann
François Lüthi
Aaron P. Russell
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