Literature DB >> 15479860

Transcriptional reprogramming and ultrastructure during atrophy and recovery of mouse soleus muscle.

Christoph Däpp1, Silvia Schmutz, Hans Hoppeler, Martin Flück.   

Abstract

This study investigated the use of the hindlimb suspension (HS) and reloading model of mice for the mapping of ultrastructural and gene expressional alterations underlying load-dependent muscular adaptations. Mice were hindlimb suspended for 7 days or kept as controls (n = 12). Soleus muscles were harvested after HS (HS7, n = 23) or after resuming ambulatory cage activity (reloading) for either 1 day (R1, n = 13) or 7 days (R7, n = 9). Using electron microscopy, a reduction in mean fiber area (-37%) and in capillary-to-fiber ratio (from 1.83 to 1.42) was found for HS7. Subsequent reloading caused an increase in interstitial cells (+96%) and in total capillary length (+57%), whereas mean fiber area and capillary-to-fiber ratio did not significantly change compared with HS. Total RNA in the soleus muscle was altered with both HS (-63%) and reloading (+108% in R7 compared with control). This is seen as an important adaptive mechanism. Gene expression alterations were assessed by a muscle-specific low-density cDNA microarray. The transcriptional adjustments indicate an early increase of myogenic factors during reloading together with an overshoot of contractile (MyHC I and IIa) and metabolic (glycolytic and oxidative) mRNA amounts and suggest mechano-sensitivity of factors keeping the sarcomeres in register (desmin, titin, integrin-beta1). Important differences to published data from former rat studies were found with the mouse HS model for contractile and glycolytic enzyme expression. These species-specific differences need to be considered when transgenic mice are used for the elucidation of monogenetic factors in mechano-dependent muscle plasticity.

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Year:  2004        PMID: 15479860     DOI: 10.1152/physiolgenomics.00100.2004

Source DB:  PubMed          Journal:  Physiol Genomics        ISSN: 1094-8341            Impact factor:   3.107


  30 in total

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2.  Endurance training modulates the muscular transcriptome response to acute exercise.

Authors:  Silvia Schmutz; Christoph Däpp; Matthias Wittwer; Michael Vogt; Hans Hoppeler; Martin Flück
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3.  Identification of a conserved set of upregulated genes in mouse skeletal muscle hypertrophy and regrowth.

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4.  Characterization of Optimal Strain, Frequency and Duration of Mechanical Loading on Skeletal Myotubes' Biological Responses.

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5.  The time course of the adaptations of human muscle proteome to bed rest and the underlying mechanisms.

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8.  Skeletal muscle mass recovery from atrophy in IL-6 knockout mice.

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Journal:  Acta Physiol (Oxf)       Date:  2011-04-27       Impact factor: 6.311

9.  Effects of spaceflight on murine skeletal muscle gene expression.

Authors:  David L Allen; Eric R Bandstra; Brooke C Harrison; Seiha Thorng; Louis S Stodieck; Paul J Kostenuik; Sean Morony; David L Lacey; Timothy G Hammond; Leslie L Leinwand; W Scott Argraves; Ted A Bateman; Jeremy L Barth
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10.  Mechano-transduction to muscle protein synthesis is modulated by FAK.

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Journal:  Eur J Appl Physiol       Date:  2009-03-18       Impact factor: 3.078

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