Literature DB >> 27742803

Skeletal muscle and resistance exercise training; the role of protein synthesis in recovery and remodeling.

Chris McGlory1, Michaela C Devries1, Stuart M Phillips2.   

Abstract

Exercise results in the rapid remodeling of skeletal muscle. This process is underpinned by acute and chronic changes in both gene and protein synthesis. In this short review we provide a brief summary of our current understanding regarding how exercise influences these processes as well as the subsequent impact on muscle protein turnover and resultant shift in muscle phenotype. We explore concepts of ribosomal biogenesis and the potential role of increased translational capacity vs. translational efficiency in contributing to muscular hypertrophy. We also examine whether high-intensity sprinting-type exercise promotes changes in protein turnover that lead to hypertrophy or merely a change in mitochondrial content. Finally, we propose novel areas for future study that will fill existing knowledge gaps in the fields of translational research and exercise science.
Copyright © 2017 the American Physiological Society.

Entities:  

Keywords:  high-intensity intermittent exercise; muscle protein synthesis; resistance exercise training; ribosomal biogenesis

Mesh:

Substances:

Year:  2016        PMID: 27742803      PMCID: PMC5401959          DOI: 10.1152/japplphysiol.00613.2016

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  94 in total

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6.  Timing and distribution of protein ingestion during prolonged recovery from resistance exercise alters myofibrillar protein synthesis.

Authors:  José L Areta; Louise M Burke; Megan L Ross; Donny M Camera; Daniel W D West; Elizabeth M Broad; Nikki A Jeacocke; Daniel R Moore; Trent Stellingwerff; Stuart M Phillips; John A Hawley; Vernon G Coffey
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7.  mTOR and S6K1 mediate assembly of the translation preinitiation complex through dynamic protein interchange and ordered phosphorylation events.

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8.  Supplementation of a suboptimal protein dose with leucine or essential amino acids: effects on myofibrillar protein synthesis at rest and following resistance exercise in men.

Authors:  Tyler A Churchward-Venne; Nicholas A Burd; Cameron J Mitchell; Daniel W D West; Andrew Philp; George R Marcotte; Steven K Baker; Keith Baar; Stuart M Phillips
Journal:  J Physiol       Date:  2012-03-25       Impact factor: 5.182

9.  Resistance training-induced changes in integrated myofibrillar protein synthesis are related to hypertrophy only after attenuation of muscle damage.

Authors:  Felipe Damas; Stuart M Phillips; Cleiton A Libardi; Felipe C Vechin; Manoel E Lixandrão; Paulo R Jannig; Luiz A R Costa; Aline V Bacurau; Tim Snijders; Gianni Parise; Valmor Tricoli; Hamilton Roschel; Carlos Ugrinowitsch
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Review 9.  Imbalances in the Development of Muscle and Tendon as Risk Factor for Tendinopathies in Youth Athletes: A Review of Current Evidence and Concepts of Prevention.

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10.  Physiological extremes of the human blood metabolome: A metabolomics analysis of highly glycolytic, oxidative, and anabolic athletes.

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