Literature DB >> 28452077

Structure and function of human muscle fibres and muscle proteome in physically active older men.

Lorenza Brocca1,2, Jamie S McPhee3, Emanuela Longa1, Monica Canepari1,2, Olivier Seynnes4, Giuseppe De Vito5, Maria Antonietta Pellegrino1,2,6, Marco Narici7, Roberto Bottinelli1,6,8.   

Abstract

KEY POINTS: Loss of muscle mass and strength in the growing population of elderly people is a major health concern for modern societies. This condition, termed sarcopenia, is a major cause of falls and of the subsequent increase in morbidity and mortality. Despite numerous studies on the impact of ageing on individual muscle fibres, the contribution of single muscle fibre adaptations to ageing-induced atrophy and functional impairment is still unsettled. The level of physical function and disuse is often associated with ageing. We studied relatively healthy older adults in order to understand the effects of ageing per se without the confounding impact of impaired physical function. We found that in healthy ageing, structural and functional alterations of muscle fibres occur. Protein post-translational modifications, oxidation and phosphorylation contribute to such alterations more than loss of myosin and other muscle protein content. ABSTRACT: Contradictory results have been reported on the impact of ageing on structure and functions of skeletal muscle fibres, likely to be due to a complex interplay between ageing and other phenomena such as disuse and diseases. Here we recruited healthy, physically and socially active young (YO) and elderly (EL) men in order to study ageing per se without the confounding effects of impaired physical function. In vivo analyses of quadriceps and in vitro analyses of vastus lateralis muscle biopsies were performed. In EL subjects, our results show that (i) quadriceps volume, maximum voluntary contraction isometric torque and patellar tendon force were significantly lower; (ii) muscle fibres went through significant atrophy and impairment of specific force (isometric force/cross-sectional area) and unloaded shortening velocity; (iii) myosin/actin ratio and myosin content in individual muscle fibres were not altered; (iv) the muscle proteome went through quantitative adaptations, namely an up-regulation of the content of several groups of proteins among which were myofibrillar proteins and antioxidant defence systems; (v) the muscle proteome went through qualitative adaptations, namely phosphorylation of several proteins, including myosin light chain-2 slow and troponin T and carbonylation of myosin heavy chains. The present results indicate that impairment of individual muscle fibre structure and function is a major feature of ageing per se and that qualitative adaptations of muscle proteome are likely to be more involved than quantitative adaptations in determining such a phenomenon.
© 2017 The Authors. The Journal of Physiology © 2017 The Physiological Society.

Entities:  

Keywords:  aging; proteome; single fibres; specific force

Mesh:

Substances:

Year:  2017        PMID: 28452077      PMCID: PMC5509857          DOI: 10.1113/JP274148

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  83 in total

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Authors:  D HARMAN
Journal:  J Gerontol       Date:  1956-07

2.  The molecular effects of skeletal muscle myosin regulatory light chain phosphorylation.

Authors:  Michael J Greenberg; Tanya R Mealy; James D Watt; Michelle Jones; Danuta Szczesna-Cordary; Jeffrey R Moore
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2009-05-20       Impact factor: 3.619

3.  Force-velocity properties of human skeletal muscle fibres: myosin heavy chain isoform and temperature dependence.

Authors:  R Bottinelli; M Canepari; M A Pellegrino; C Reggiani
Journal:  J Physiol       Date:  1996-09-01       Impact factor: 5.182

4.  Skeletal muscle hypertrophy and structure and function of skeletal muscle fibres in male body builders.

Authors:  Giuseppe D'Antona; Francesca Lanfranconi; Maria Antonietta Pellegrino; Lorenza Brocca; Raffaella Adami; Rosetta Rossi; Giorgio Moro; Danilo Miotti; Monica Canepari; Roberto Bottinelli
Journal:  J Physiol       Date:  2005-12-08       Impact factor: 5.182

Review 5.  Sarcopenia: characteristics, mechanisms and functional significance.

Authors:  Marco V Narici; Nicola Maffulli
Journal:  Br Med Bull       Date:  2010-03-02       Impact factor: 4.291

6.  Mechanical ventilation depresses protein synthesis in the rat diaphragm.

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7.  Single skeletal muscle fiber elastic and contractile characteristics in young and older men.

Authors:  Julien Ochala; Walter R Frontera; David J Dorer; Jacques Van Hoecke; Lisa S Krivickas
Journal:  J Gerontol A Biol Sci Med Sci       Date:  2007-04       Impact factor: 6.053

8.  The adaptive responses in several mediators linked with hypertrophy and atrophy of skeletal muscle after lower limb unloading in humans.

Authors:  K Sakuma; K Watanabe; N Hotta; T Koike; K Ishida; K Katayama; H Akima
Journal:  Acta Physiol (Oxf)       Date:  2009-04-29       Impact factor: 6.311

9.  Orthologous myosin isoforms and scaling of shortening velocity with body size in mouse, rat, rabbit and human muscles.

Authors:  M A Pellegrino; M Canepari; R Rossi; G D'Antona; C Reggiani; R Bottinelli
Journal:  J Physiol       Date:  2003-02-01       Impact factor: 5.182

10.  Comparative proteomic profile of rat sciatic nerve and gastrocnemius muscle tissues in ageing by 2-D DIGE.

Authors:  Daniele Capitanio; Michele Vasso; Chiara Fania; Manuela Moriggi; Agnese Viganò; Patrizia Procacci; Valerio Magnaghi; Cecilia Gelfi
Journal:  Proteomics       Date:  2009-04       Impact factor: 3.984

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2.  What is it about old muscles?

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3.  Effects of photobiomodulation therapy associated with resistance training in elderly men: a randomized double-blinded placebo-controlled trial.

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6.  Aging alters gastrocnemius muscle hemoglobin oxygen saturation (StO2) characteristics in healthy individuals.

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7.  Human adipose and skeletal muscle tissue DNA, RNA, and protein content.

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8.  Single-muscle fiber contractile properties in lifelong aerobic exercising women.

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10.  The Contributions of Fiber Atrophy, Fiber Loss, In Situ Specific Force, and Voluntary Activation to Weakness in Sarcopenia.

Authors:  Jamie S McPhee; James Cameron; Thomas Maden-Wilkinson; Mathew Piasecki; Moi Hoon Yap; David A Jones; Hans Degens
Journal:  J Gerontol A Biol Sci Med Sci       Date:  2018-09-11       Impact factor: 6.053

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