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PMID: 2310769 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Role of phosphocreatine in energy transport in skeletal muscle of bullfrog studied by 31P-NMR.

Biochimica et biophysica acta ·Vol. 1051 ·No. 2 ·1990-02-19 ·Pages 144-50

Yoshizaki K, Watari H, Radda GK

Abstract

To evaluate the energy-shuttle hypothesis of the phosphocreatine/creatine kinase system, diffusion rates for ATP, phosphocreatine and flux through the creatine kinase reaction were determined by 31P-NMR in resting bullfrog biceps muscle. The diffusion coefficient of phosphocreatine measured by 31P-pulsed gradient NMR was 1.4-times larger than ATP in the muscle, indicating the advantage of phosphocreatine molecules for the intracellular energy transport. The flux of the creatine kinase reaction measured by 31P-saturation transfer NMR was 3.6 mmol/kg wet wt. per s in the resting muscle. The flux is equal to the turnover rate of ATP, ADP, phosphocreatine and creatine molecules, therefore, the life-times of these substrates and the average distance traversed after the life-times by the diffusing molecules were calculated using the diffusion coefficients obtained by 31P-NMR. The mean square length of one-dimensional diffusion was 22 microns in ATP molecules and the minimum diffusion length was 1.8 microns in ADP molecules. The latter was calculated using free ADP concentration, 30 mumol/kg wet wt., obtained from the equilibrium constant of the creatine kinase reaction and the diffusion coefficient assumed to be the same of ATP in muscle. Similar diffusion lengths of ADP were calculated using the reported values for the flux of the creatine kinase reaction in heart and smooth-muscle. The diffusion lengths of all substrates involved in the creatine kinase reaction were larger than the radii of myofibrils. Therefore, in the muscles with an alternating arrangement of mitochondria and myofibrils, such as heart and certain skeletal muscles, ATP and ADP molecules can move freely between myofibrils and mitochondria without the aid of the creatine kinase reaction; thus, we conclude that the energy-shuttle hypothesis is not obligatory for energy transport between the mitochondria and the myofibrils.

MeSH Terms
Adenosine Triphosphate/metabolism Animals Creatine Kinase/metabolism Diffusion Energy Metabolism Humans Magnetic Resonance Spectroscopy Muscles/drug effects,metabolism Phosphocreatine/pharmacology Rana catesbeiana Time Factors
Chemicals
Phosphocreatine Adenosine Triphosphate Creatine Kinase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Yoshizaki K
Department of Physiology, Kyoto Prefectural University of Medicine, Japan.
Watari H
Radda G K
Article Info
Journal
Biochimica et biophysica acta
Abbr.
Biochim Biophys Acta
ISSN
0006-3002
Published
1990-02-19
Pages
144-50
Language
English
Region
Netherlands
NLM ID
0217513
Subset
IM
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