Literature DB >> 2764153

Protein metabolism and beta-myosin heavy-chain mRNA in unweighted soleus muscle.

D B Thomason1, R B Biggs, F W Booth.   

Abstract

To investigate the relative influence of protein synthetic and degradative control mechanisms in vivo during skeletal muscle atrophy, we measured myofibril and total mixed protein synthesis rates in muscles of rats prevented from hindlimb weight-bearing for 5 h and 7 days. Protein synthesis rates were determined by infusing the animals with [3H]Leu for 5 h and measuring the specific activity of [3H]Leu in the aminoacyl-tRNA precursor and protein product fractions of the muscles. In the soleus muscle, myofibril protein synthesis rates decreased from a control value of 5.9 to 4.6%/day during 5 h of hindlimb unweighting and to 2.4%/day after 7 days of hindlimb unweighting. The relatively more phasic muscles (plantaris, medial gastrocnemius, quadriceps) showed a tendency for increased myofibril protein synthesis rates (117-127% of control) during the first 5 h followed by a decrease (46-62% of control) at 7 days of hindlimb unweighting. A predicted time course of soleus muscle myofibril protein degradation rate was obtained from a numerical model of the decrease in soleus myofibril protein synthesis rate as a first-order process [half-time (t1/2) = 0.3 day by least-squares fit] and the time course of soleus muscle myofibril protein previously observed with hindlimb unweighting (Thomason et al., J. Appl. Physiol. 63: 130-137, 1987). The degradation rate model makes specific, testable predictions for the mechanism of myofibril protein degradation during soleus muscle atrophy: 1) the first-order degradation rate constant does not obtain a fixed value over a 24-day period but is continuously changing throughout atrophy, and 2) the first-order degradation rate constant changes on a time scale slower than protein synthesis rate.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1989        PMID: 2764153     DOI: 10.1152/ajpregu.1989.257.2.R300

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  47 in total

1.  Differential effects of mild therapeutic exercise during a period of inactivity on power generation in soleus type I single fibers with age.

Authors:  Jong-Hee Kim; LaDora V Thompson
Journal:  J Appl Physiol (1985)       Date:  2012-03-15

2.  Age-dependent effects of treadmill exercise during a period of inactivity.

Authors:  P Arora; A D Husom; D A Ferrington; L V Thompson
Journal:  Exp Gerontol       Date:  2008-03-20       Impact factor: 4.032

Review 3.  Regulation of protein turnover in skeletal and cardiac muscle.

Authors:  P H Sugden; S J Fuller
Journal:  Biochem J       Date:  1991-01-01       Impact factor: 3.857

4.  Contractile properties of the human triceps surae muscle during simulated weightlessness.

Authors:  Y Koryak
Journal:  Eur J Appl Physiol Occup Physiol       Date:  1995

5.  CrossTalk proposal: The dominant mechanism causing disuse muscle atrophy is decreased protein synthesis.

Authors:  Stuart M Phillips; Chris McGlory
Journal:  J Physiol       Date:  2014-12-15       Impact factor: 5.182

Review 6.  Exercise: Teaching myocytes new tricks.

Authors:  Scott K Powers
Journal:  J Appl Physiol (1985)       Date:  2017-06-01

Review 7.  Muscular atrophy following immobilisation. A review.

Authors:  H J Appell
Journal:  Sports Med       Date:  1990-07       Impact factor: 11.136

8.  Eukaryotic elongation factor 2 kinase activation in M. soleus under 14-day hindlimb unloading of rats.

Authors:  Y N Lomonosova; S P Belova; T M Mirzoev; I B Kozlovskaya; B S Shenkman
Journal:  Dokl Biochem Biophys       Date:  2017-07-20       Impact factor: 0.788

Review 9.  Mitochondrial dysfunction induces muscle atrophy during prolonged inactivity: A review of the causes and effects.

Authors:  Hayden Hyatt; Rafael Deminice; Toshinori Yoshihara; Scott K Powers
Journal:  Arch Biochem Biophys       Date:  2018-11-16       Impact factor: 4.013

10.  Coordinate activation of lysosomal, Ca 2+-activated and ATP-ubiquitin-dependent proteinases in the unweighted rat soleus muscle.

Authors:  D Taillandier; E Aurousseau; D Meynial-Denis; D Bechet; M Ferrara; P Cottin; A Ducastaing; X Bigard; C Y Guezennec; H P Schmid
Journal:  Biochem J       Date:  1996-05-15       Impact factor: 3.857

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