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The Difference in the Effect of Glutamate and NO Synthase Inhibitor on Free Calcium Concentration and Na+,K+-ATPase Activity in Synaptosomes from Various Brain Regions
Authors:Avrova  N F  Shestak  K I  Zakharova  I O  Sokolova  T V  Leont'ev  V G
Institution:(1) Department of Comparative Neurochemistry, Sechenov Institute of Evolutionary Physiology and Biochemistry of Russian Ac. Sci., Saint-Petersburg, Russia;(2) Sechenov Institute of Evolutionary Physiology and Biochemistry of Russian Ac. Sci., Saint-Petersburg, Russia
Abstract:The significant increase of free calcium concentration (Ca2+]i) was found in rat cerebral cortex synaptosomes and hippocampal crude synaptosomal fraction after their exposure to glutamate. But no change of Ca2+]i was revealed in cerebellar synaptosomes, the slight increase of Ca2+]i in striatal synaptosomes was not significant. The presence of Ng-nitro-L-arginine methyl ester (L-NAME) in the incubation medium practically prevented the increase of Ca2+]i initiated by glutamate in cerebral cortex synaptosomes, but not in hippocampal ones. The significant diminution of Ca2+]i in the presence of this inhibitor was shown in striatal synaptosomes exposed to glutamate. Na+,K+-ATPase activity is significantly lower in cerebral cortex, striatal and hippocampal synaptosomes exposed to glutamate. L-NAME prevented the inactivation of this enzyme by glutamate. In cerebellar synaptosomes the tendency to the decrease of enzymatic activity in the presence of L-NAME was on the contrary noticed. Thus, the data obtained provide evidence of the protective effect of NO synthase inhibitor in brain cortex and striatal synaptosomes, but not in cerebellar synaptosomes. Synaptosomes appear to be an adequate model to study the regional differences in the mechanism of toxic effect of excitatory amino acids.
Keywords:Free calcium  Na+  K+-ATPase  glutamate  NO synthase inhibitor  synaptosomes  brain regions
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