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January 1, 1999AJP Cell Physiology729 citations

Phosphorylation of p70S6kcorrelates with increased skeletal muscle mass following resistance exercise

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KBKeith BaarKEKaryn A. Esser

Key Points

  • To investigate acute translation initiation and p70S6k activation after high-resistance exercise and determine whether acute signaling correlates with long-term muscle hypertrophy.
  • Trained rats twice weekly for 6 weeks using a novel high-resistance exercise model.
  • Evaluated polysome profiles and p70S6k activity in the extensor digitorum longus (EDL) and tibialis anterior (TA) muscles following high-resistance lengthening contractions.
  • Correlated acute increases in p70S6k activity at 6 hours post-exercise with percent changes in muscle wet mass after 6 weeks of training.
  • Six weeks of training produced 13.9% hypertrophy in the EDL and 14.4% hypertrophy in the TA muscles.
  • High-resistance lengthening contractions elevated p70S6k activity by 363 ± 29% in the TA and 353 ± 39% in the EDL.
  • Acute p70S6k activity 6 hours post-exercise strongly correlated with the percentage increase in muscle mass after 6 weeks (r = 0.998).

Abstract

High-resistance exercise training results in an increase in muscle wet mass and protein content. To begin to address the acute changes following a single bout of high-resistance exercise, a new model has been developed. Training rats twice a week for 6 wk resulted in 13.9 and 14.4% hypertrophy in the extensor digitorum longus (EDL) and tibialis anterior (TA) muscles, respectively. Polysome profiles after high-resistance lengthening contractions suggest that the rate of initiation is increased. The activity of the 70-kDa S6 protein kinase (p70(S6k)), a regulator of translation initiation, is also increased following high-resistance lengthening contractions (TA, 363 +/- 29%; EDL, 353 +/- 39%). Furthermore, the increase in p70(S6k) activity 6 h after exercise correlates with the percent change in muscle mass after 6 wk of training (r = 0.998). The tight correlation between the activation of p70(S6k) and the long-term increase in muscle mass suggests that p70(S6k) phosphorylation may be a good marker for the phenotypic changes that characterize muscle hypertrophy and may play a role in load-induced skeletal muscle growth.

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Cite This Study

Baar et al. (1999) studied this question.

synapsesocial.com/papers/6a0a904d286b3ba5d970a3c8https://doi.org/10.1152/ajpcell.1999.276.1.c120
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