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Inhibition of rat brain tryptophan hydroxylase by 6-halotryptophans   总被引:6,自引:0,他引:6  
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Regional distribution of tyrosine hydroxylase in rat brain   总被引:3,自引:1,他引:2  
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Rat Brain has a lipase which hydrolyzes diacylglycerol at an optimal pH of 4.8 (1). The subcellular distribution of this acid diacylglycerol lipase was studied in brain tissue of rats and mice; in the latter case neurological mutants and their normal controls were used. Several other acidic hydrolases were employed as normal controls were used. Several other acidic hydrolases were employed as lysosomal markers. In mouse brain, the specific activity which is about 50-100 times lower than in rat brain, was greatest in the lysosomal fraction. In contrast, no enrichment of DG-lipase was observed in any subcellular fraction of the active enzyme of rat brain. Activities were about equally distributed in the microsomal, myelin-synaptosomal and lysosomal fractions.  相似文献   

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S Knapp  A J Mandell  W P Bullard 《Life sciences》1975,16(10):1583-1593
Using both radioisotopic and fluorometric techniques to measure the activity of midbrain soluble enzyme, we have demonstrated that calcium activates tryptophan hydroxylase. The observed activation apparently results from an increased affinity of the enzyme for both its substrate, tryptophan, and the cofactor 2-amino-4-hydroxy-6-methyl-5,6,7,8-tetrahydropteridine (6-MPH4). The calcium activation of tryptophan hydroxylase appears to be specific for both enzyme and effector: other brain neurotransmitter biosynthetic enzymes, such as aromatic amino acid decarboxylase(s) and tyrosine hydroxylase, are not affected by calcium (at concentrations ranging from 0.01 mM to 2.0 mM); other divalent cations, such as Ba++, Mg++, and Mn++, have no activating effect on tryptophan hydroxylase. This work suggests that increases in brain serotonin biosynthesis induced by neural activation may be due to influx of Ca++ associated with membrane depolarization and resulting activation of nerve ending tryptophan hydroxylase.  相似文献   

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The concentration of taurine and the activities of cysteinesulphinate decarboxylase and glutamate decarboxylase have been measured in rat brain. During development, taurine exhibited a decrease in concentration unrelated to the activity of cysteinesulphinate decarboxylase which increased during the same period. The distribution of taurine in subcellular fractions of adult and 7-day-old rat brain was typical of most amino acids, whereas half of the cysteinesulphinate decarboxylase activity was found in the nerve-ending cytoplasm. In anatomical distribution, taurine displayed great regional heterogeneity but both cysteinesulphinate decarboxylase and glutamate decarboxylase were more evenly distributed. Hypertaurinaemia was shown to have no effect on the entry of glycine into the brain or on its utilization in protein synthesis.  相似文献   

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Lysophosphatidylinositol acyltransferase utilizing arachidonoyl CoA and lysophosphatidylcholine acyltransferase utilizing linoleoyl CoA were measured in subcellular fractions of rat brain. In general, the distribution of activities paralleled that of NADPH--cytochrome c reductase. It is concluded that the endoplasmic reticulum is the major site of these acyltransferase activities in rat brain.  相似文献   

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Abstract— The subcellular distributions of tyrosine transaminase, DOPA transaminase, tryptophan transaminase and 5-hydroxytryptophan (5-HTP) transaminase were studied in rat brain.
  • 1 For all of these transaminases 60-81 per cent of the total activities were found in the crude mitochondrial fraction. Tyrosine transaminase was the most active enzyme.
  • 2 Tyrosine transaminase and DOPA transaminase had very similar distributions in all fractions, but the distribution of tryptophan transaminase and 5-HTP transaminase differed in the microsomal (Mic) and synaptic vesicle (M2) fractions. Only 5-HTP transaminase was highly concentrated in the M2 fraction.
  • 3 DOPA transaminase was inhibited by dopamine and 5-HT, but these compounds had no effect on 5-HTP transaminase. Both enzymes were completely inhibited by m-hydroxybenzoyloxyamine.
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5,6-DIHYDROXYTRYPTAMINE has been shown to cause selective degeneration of serotonergic neurons in the central nervous sytem (BAUMGARTEN, LACHENMAYER and SCHLOSSBERGER, 1972b). This degeneration is accompanied by depletion of serotonin (BAUMGARTEN et al., 1971; 1972a) and loss of tryptophan hydroxylase activity (VICTOR, BAUMGARTEN and LOVENBERG, 1973) in certain regions of the brain. In the current experiments, the effect of 5,7-dihydroxytryptamine (another dihydroxylated tryptamine derivative) on tryptophan hydroxylase activity has been examined. Since tryptophan hydroxylase is the rate-limiting enzyme in serotonin biosynthesis and has a similar distribution to that of serotonin in the brain, it is used as a biochemical marker of serotonergic neurons, Recent experiments also indicate that 5,7-dihydroxytryptamine causes morphological damage to serotonergic neurons of the central nervous system (BAUMGARTEN and LACHENMAYER, 1972).  相似文献   

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