Literature DB >> 3966541

Influence of aerobic metabolism on IMP accumulation in fast-twitch muscle.

G A Dudley, R L Terjung.   

Abstract

Significant activation of AMP deaminase in fast-twitch muscle leads to a loss of ATP and accumulation of NH4 and IMP. Although this occurs during severe metabolic stress caused by intense contraction conditions, the process is probably influenced by the muscle's capacity for aerobic metabolism. We evaluated this possibility during moderately intense (5 Hz) contraction conditions in situ by following the time course of NH4 and IMP accumulation in fast-twitch, low-oxidative white (FTW) and fast-twitch, high-oxidative red (FTR) muscle of the rat. A high rate of IMP formation, resulting in a 50% loss of ATP content, occurred in normal FTW, but not FTR muscle, during contractions when blood flow was intact. Eliminating blood flow prior to contractions, however, removed the distinction between the FTR and FTW muscle. The FTR fiber section now produced a high IMP content and a stoichiometric loss of ATP. Thus the ability of the FTR fiber to sustain this contraction effort without an ATP loss is due to its greater functional capacity for aerobic metabolism. The FTW muscle section of trained animals exhibited a reduced accumulation of IMP and a smaller loss of ATP during the same 5-Hz stimulation. The mitochondrial content and peak blood flow of this FTW fiber section is increased by training. Thus it is probable that the cellular conditions leading to a significant accumulation of IMP in fast-twitch muscle are determined by the metabolic stress established by the contraction effort, relative to the muscle fiber's functional capacity for aerobic metabolism.

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Year:  1985        PMID: 3966541     DOI: 10.1152/ajpcell.1985.248.1.C37

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


  13 in total

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3.  High energy phosphates and related compounds, glycogen levels and histology in the rat tibialis anterior muscle after forced lengthening and isometric exercise.

Authors:  J H van der Meulen; H Kuipers; F R Stassen; H A Keizer; G J van der Vusse
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4.  Effects of endurance training on hyperammonaemia during a 45-min constant exercise intensity.

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Review 5.  Regulation of glycogen breakdown and its consequences for skeletal muscle function after training.

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6.  Increased blood ammonia in hypoxia during exercise in humans.

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Review 7.  Metabolic interaction between purine nucleotide cycle and oxypurine cycle during skeletal muscle contraction of different intensities: a biochemical reappraisal.

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Journal:  Metabolomics       Date:  2018-02-27       Impact factor: 4.290

8.  Energy metabolism in single human muscle fibres during intermittent contraction with occluded circulation.

Authors:  P L Greenhaff; K Söderlund; J M Ren; E Hultman
Journal:  J Physiol       Date:  1993-01       Impact factor: 5.182

9.  Lactate transport by skeletal muscle sarcolemmal vesicles.

Authors:  J C McDermott; A Bonen
Journal:  Mol Cell Biochem       Date:  1993-05-26       Impact factor: 3.396

10.  Effect of a low-carbohydrate diet on plasma and sweat ammonia concentrations during prolonged nonexhausting exercise.

Authors:  D Czarnowski; J Langfort; W Pilis; J Górski
Journal:  Eur J Appl Physiol Occup Physiol       Date:  1995
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