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Regulation of energy flux through the creatine kinase reaction in vitro and in perfused rat heart: 31P-NMR studies
Authors:VV Kupriyanov  AYa Steinschneider  EK Ruuge  VI Kapel&#x;ko  MYu Zueva  VL Lakomkin  VN Smirnov  VA Saks
Institution:Laboratory of Cardiac Bioenergetics, USSR Research Center for Cardiology, 3rd Cherepkovskaya str. 15a, Moscow, 121552 U.S.S.R.
Abstract:Fluxes catalyzed by soluble creatine kinase (MM) in equilibrium in vitro and by the creatine kinase system in perfused rat hearts were studied by 31P-NMR saturation transfer method. It was found that in vitro both forward and reverse fluxes through creatine kinase at equilibrium were almost equal and very stable to changes in phosphocreatinecreatine ratio (from 0.2 to 3.0) as well as to changes in pH (from 7.4 to 6.5 or 8.1), free Mg2+ concentration and 2-fold decrease of total adenine nucleotides and creatine pools (from 8.0 to 4.0 mM and from 30 to 14 mM, respectively). In the rat hearts perfused by the Langendorff method the creatine kinase-catalyzed flux from phosphocreatine to ATP was increased by 50% when oxygen consumption grew from 8 to 55 μmol/min per g of dry wt. due to transition from rest to high workload. These changes could not be exclusively explained on the basis of the equilibrium model by activation of heart creatine kinase due to some decrease in phosphocreatine]creatine] ratio (from 1.8 to 0.8) observed during transition from rest to high workload. Analysis of our data showed that an increase in the flux via creatine kinase is correlated with an increase in the rate of ATP synthesis with a linearity coefficient higher than 1.0. These data are more consistent with the concept of energy channeling by phosphocreatine shuttle than with that of the creatine kinase equilibrium in the heart.
Keywords:Creatine kinase  Energy flux  (Perfused rat heart)  Hepes  4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid  EGTA
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