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[Characteristics of hexosephosphate transformation regulation in Zajdela hepatoma and the liver of tumor-bearing rats].

Essential differences are established between the activities in enzymes of monophosphohexoses' transformation in the Zajdela hepatoma and liver of tumour-bearing rats. So, a very low hexokinase activity is observed in the liver, the activity of phosphoglucomutase and glucose-6-phosphate being high. In hepatoma cells the activity of hexokinase is relatively high and that of phosphoglucomutase, glucose-6-phosphate phosphatase and dehydrogenases--glucose-6-phosphate and 6-phosphogluconate inhibiting the activity of phosphoglucomutase is considerably lower. Significant differences are also found in the ratios of the glucose, glucose-6-phosphate, fructose and fructose-6-phosphate concentrations, that evidences for changes in the regulatory mechanisms in the hepatoma cells.

Animals↗

[Some patterns of hexosephosphate metabolism in extracts of human blood platelets].

Glucose phosphate isomerase reaction was shown to be important in turnover of fructose-6-phosphate in extracts of human thrombocytes as a result of deterioration of glycolytic process. Effect of fructose-6-phosphate concentration on its consumption and on formation of glucose-6-phosphate was studied. Alterations in content of fructose-6-phosphate and glucose-6-phosphate in presence of various NADP concentrations were estimated.

Blood Platelets↗

[Evaluation of the therapeutic action of hexosephosphate as an energy-supplying agent in acute coronary insufficiency].

It was established in experiments on 24 dogs with ligated interventricular branch of the left coronary artery that hexosophosphate (0.5 and 1 ml/kg intravenously) increases the collateral coronary blood flow and myocardial contractility against the background of a decrease in the lactate content in blood draining from the ischemic zone. Preliminary injection of hexosophosphate to rabbits increases the respiratory control in mitochondria from the ischemic myocardium. Drip intravenous hexosophosphate (100 ml) infusion to patients in the acute period of myocardial infarction reduced significantly sigma ST in precardiac leads and reduced the lactic acid content in venous blood. In 7.6% of cases hexosophosphate caused arrest or abatement of the pain syndrome.

Acute Disease↗

Chromosome assignments in man of the genes for two hexosephosphate isomerases.

Thirty-seven clones of somatic cell hybrids between human and mouse cells were examined for retention of human chromosomes and expression of human constitutive enzymes. Human glucosephosphate isomerase and chromosome F-19 were retained or lost concordantly, as were human mannosephosphate isomerase and chromosome C-7. The genes for the enzymes are thus assigned to these two chromosomes.

Animals↗

The hexosamine biosynthetic pathway and glucose-induced down regulation of glucose transport in L6 myotubes.

Based on experiments in cultured adipocytes, it has been proposed that glucose-induced down regulation of glucose transport is mediated by the conversion of fructose-6-phosphate to glucosamine-6-phosphate via the first and rate-determining enzyme of the hexosamine biosynthetic pathway, glutamine: fructose-6-phosphate amidotransferase (glutamine hexosephosphate aminotransferase). Evidence for this assertion was: (a) L-glutamine, the provider group for the aminotransferase was essential; (b) two inhibitors of glutamine hexosephosphate aminotransferase, 6-diazo-5-oxonorleucine (L form) and azaserine, blocked glucose-induced down regulation of glucose transport; (c) azaserine inhibited the activity of the aminotransferase, (d) glucosamine, which enters the hexosamine pathway distal to this enzyme was 40-times more potent than glucose; and (e) azaserine was unable to block the effect of glucosamine. Since muscle is quantitatively much more important than adipose tissue for whole body glucose utilization, we sought to determine if the hexosamine pathway was involved in glucose-induced down regulation of glucose transport in L6 myotubes. Glucose was effective, both in the presence and absence of glutamine in the incubation media. Glucosamine was also effective but was as equipotent as glucose. Small amounts of glutamine hexosephosphate aminotransferase were present in the L6 myotubes and although the leucine derivative (20 microM) inhibited the enzyme, it did not impair glucose-induced down regulation of glucose transport. Total GLUT-1 levels were similar when the cells were incubated in the absence or presence of 5 mM glucose or glucosamine although glucosamine was associated with a marked increase in a lower molecular weight band. These results do not suggest that the hexosamine biosynthetic pathway is involved in glucose-induced down regulation of glucose transport in L6 myotubes. Thus, this phenomenon is regulated differently in muscle and fat.

Animals↗