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Population relationships of Simulium yahense and Simulium sanctipauli in the Firestone Rubber Plantation at Harbel, Liberia.

Comparative genetic differences for the phosphoglucomutase and trehalase loci were surveyed in larval and adult blackfly populations of the onchocerciasis vectors Simulium yahense Vajime and Dunbar, and S.sanctipauli Vajime and Dunbar. Genotype frequencies for each stage and all populations were at Hardy-Weinberg equilibrium, indicating that S.yahense and S.sanctipauli remain genetically distinct. S.yahense populations from three different locations were found to be genotypically comparable. The larval population of S.yahense found in closest proximity to a S.sanctipauli population was found to express the phosphoglucomutase allele 1.33, characteristic of S.sanctipauli, with significantly greater frequency than other larval populations of S.yahense. This may constitute evidence of limited genetic introgression of S.sanctipauli with the S.yahense population.

Animals↗

Distribution of the glucose-1,6-bisphosphate system in brain and retina.

The distribution of glucose-1,6-bisphosphate (G16P2) synthase was measured in more than 70 regions of mouse brain, and nine layers of monkey retina. Activities in gray areas varied as much as 10-fold, in a hierarchical manner, from highest in telencephalon, especially the limbic system, to lowest in cerebellum, medulla, and spinal cord. The synthase levels were significantly correlated among different regions with G16P2 itself, as well as with previously published levels of a brain specific IMP-dependent G16P2 phosphatase. In contrast, neither G16P2 nor either its synthase or phosphatase correlated positively with phosphoglucomutase, and in all regions the G16P2 levels greatly exceeded requirements for activation of this mutase. This strengthens the view that G16P2 has some function besides serving as coenzyme for phosphoglucomutase. However, attempts to correlate the "G16P2 system," as defined by the three coordinately related elements, synthase, phosphatase, and G16P2, with other enzymes of carbohydrate metabolism, or with regional data of Sokoloff et al. [J. Neurochem. 28, 897-916 (1977)] for glucose consumption, were unsuccessful. This leaves open the possibility that brain G16P2 might serve as a phosphate donor for specific nonmetabolic effector proteins.

Animals↗

Enzymatic conversion of glucose to UDP-4-keto-6-deoxyglucose in Streptomyces spp.

All of the 2,6-dideoxy sugars contained within the structure of chromomycin A3 are derived from D-glucose. Enzyme assays were used to confirm the presence of hexokinase, phosphoglucomutase, UDPG pyrophosphorylase (UDPGP), and UDPG oxidoreductase (UDPGO), all of which are involved in the pathway of glucose activation and conversion into 2,6-dideoxyhexoses during chromomycin biosynthesis. Levels of the four enzymes in Streptomyces spp. cell extracts were correlated with the production of chromomycins. The pathway of sugar activation in Streptomyces spp. involves glucose 6-phosphorylation by hexokinase, isomerization to G-1-P catalyzed by phosphoglucomutase, synthesis of UDPG catalyzed by UDPGP, and formation of UDP-4-keto-6-deoxyglucose by UDPGO.

Carbohydrate Sequence↗

Skeletal muscle enzyme alterations after sprint and endurance training.

Specifically designed programs of sprint and endurance running were used to determine how different types of training affect enzyme activities in selected energy metabolism pathways. Three types of rat skeletal muscle were studied. After 8 wk of training, small but significant decreases in lactate dehydrogenase activity (15%) were found in the soleus and white vastus lateralis muscles of the sprint animals. Decreased levels of phosphoglucomutase and lactate dehydrogenase (approx. 20%) of the white vastus lateralis muscles of the endurance group were observed at the same time. By 16 wk of training, fumarase activity increased approximately twofold in the white vastus muscles and 45% in the soleus and plantaris muscles of the endurance group. Similarly, increased fumarase activity (42%) was seen in the soleus muscles of the sprint group. In all muscles, phosphoglucomutase and lactate dehydrogenase activities generally were lower in the endurance animals than in the control animals. No significant differences were found between the sprint and endurance groups at either or sixteen weeks of training. These results suggest that similar enzyme adaptations occur over time with both types of training.

Adaptation, Physiological↗

Some enzyme polymorphisms in Malaysian mothers and their newborn.

Four red cell enzyme systems were studied in Malaysian mothers and their newborn belonging to three racial groups, the Malays, Indians and Chinese. No significant heterogeneity was observed in the distribution of phosphoglucomutase (PGM1), adenosine deaminase (ADA), 6-phosphogluconate dehydrogenase (6PGD) and acid phosphatase (AP) phenotypes between mothers and their newborn of the three groups. Pooled mother and child acid phosphatase data show a significant heterogeneity between the Malays and Chinese, and between the Malays and Indians. This is comparable to previous studies conducted. For the placental phosphoglucomutase (PGM3) system, a significant heterogeneity was observed between the Chinese and Malays only. No significant heterogeneity was detected in the distribution of PGM1, ADA and 6PGD phenotypes among Malays, Chinese and Indians.

Acid Phosphatase↗

Heterogeneity of human platelets. V. Differences in glycolytic and related enzymes with possible relation to platelet age.

Human platelets were separated by desity-centrifugation into heavy and light populations. Heavy platelets have an average volume approximately twofold greater than light platelets, and have previously been shown to be young platelets. All 11 enzymes of the Embden-Meyerhof pathway plus the five related enzymes: phosphoglucomutase, glucose-6-P dehydrogenase, 6-P-gluconic dehydrogenase, alpha-glycerol-P dehydrogenase, and glutathione reductase (TPNH) were examined in cell lysates from total, heavy, and light platelet populations. Apparent Km for individual enzymes were measured in a total platelet population. Empirical V(max) of the individual enzymes were measured in total, heavy, and light platelet populations. The three apparent rate-limiting enzymes for glycolysis were hexokinase, phosphofructokinase, and glyceraldehyde-3-P dehydrogenase. Heavy platelets contained approximately twofold greater enzyme activity (per gram wet weight) than light platelets for 7 of the 16 enzymes measured: hexokinase, phosphohexoisomerase, phosphofructokinase, glyceraldehyde-3-P dehydrogenase, phosphoglycerokinase, lactic dehydrogenase, and phosphoglucomutase. Heavy platelets also contained 1.9-fold greater reduced glutathione (GSH), 1.7-fold greater DPNH, and 1.2-fold greater TPNH than light platelets. Heavy platelets contained 1.8-fold less lipid peroxidation products (malonyl aldehyde equivalents) than light platelets and were 2.4-fold more resistant to lipid peroxidation catalyzed by 0.1 mM FeCl(3). Sterile incubation of heavy platelets, in vitro for 17 hr, resulted in a significant loss of enzyme activity for the "elevated" seven enzymes when compared with the remainder. Reducing agents such as GSH (0.1 mM), ascorbic acid (0.1 mM), and dithiothreitol (0.01 mM), when added to the incubation mixture, significantly reduced the in vitro loss of activity. In vitro incubation was also associated with a significant loss of GSH and DPNH and a 1.8-fold increase in lipid peroxidation products.

Ascorbic Acid↗

Electrophoretic studies on enzymes in the Japanese common liver fluke, Fasciola sp. I. Enzyme variations in the natural population.

A preliminary study on four enzymes, adenylate kinase, phosphoglucomutase, phosphogluconate dehydrogenase and esterase, of Fasciola sp. found in Japan was carried out by horizontal starch gel electrophoresis. Among them, two enzymes, adenylate kinase and phosphoglucomutase, showed variations in the natural population, but the frequencies of the variants were considerably low; the remainders, phosphogluconate dehydrogenase and esterase, showed no variation.

Adenylate Kinase↗

[Determination of the phenotypes of several erythrocytic enzymes by cellulose acetate electrophoresis].

The authors describe simple and rapid separation technics by electrophoresis on cellulose acetate of glucose-6-phosphate dehydrogenase isoenzymes, 6-phosphogluconate dehydrogenase, phosphoglucomutase, adenosine deaminase, adenylate kinase, phosphohexose isomerase, lactate dehydrogenase iosenzymes in the red cells. These technics are derived from those of Rattazi et al. for glucose-6-phosphate dehydrogenase and Sonneborn for 6-phosphogluconate dehycrogenase, phosphoglucomutase, adenosine deaminase, adenylate kinase and acid phosphatase.

Acid Phosphatase↗

[Intraerythrocytic enzyme activities in euthyroid subjects and hyperthyroid patients before treatment and following stabilization of metabolism using radioiodine therapy].

The activities of six intra-erythrocytic enzymes--glucose-6-phosphate-dehydrogenase, aldolase, pyruvate kinase, hexokinase, triosephosphate-isomerase and phosphoglucomutase--have been measured in euthyroid probands (n=18) and in hyperthyroid patients (n=13) prior to radioiodine therapy and after stabilization of the metabolic conditions. The hexokinase, triosephosphate-isomerase, pyruvate kinase, and glucose-6-phosphate-dehydrogenase did not show any significant changes. A moderate diminution of the aldolase activity and a distinct decrease of the phosphoglucomutase activity occur during hyperthyroidism. After normalization of the metabolic conditions, both the enzymatic activities increase again.

Erythrocytes↗

Molecular basis of cellulose biosynthesis disappearance in submerged culture of Acetobacter xylinum.

Acetobacter xylinum strains are known as very efficient producers of bacterial cellulose which, due to its unique properties, has great application potential. One of the most important problems faced during cellulose synthesis by these bacteria is generation of cellulose non-producing cells, which can appear under submerged culture conditions. The reasons of this remain unknown. These studies have been undertaken to compare at the molecular level wild-type, cellulose producing (Cel(+)) A. xylinum strains with Cel(-) forms of cellulose-negative phenotype. Comparison of protein profiles of both forms of A. xylinum by 2D electrophoresis allowed for the isolation of proteins which were produced exclusively by either Cel+ or Cel- cells. Sequences of peptides derived from these proteins were aligned with those of proteins deposited in databases. This analysis revealed that Cel(-) cells lacked two enzymes: phosphoglucomutase and glucose-1-phosphate uridylyltransferase, which generates UDP-glucose being the substrate for cellulose synthase. DNA was analyzed by ligation-mediated PCR carried out at low denaturation temperature (PCR-MP). Two DNA fragments of different thermal stability (218 and 217 bp) were obtained from the DNA of Cel(+) and Cel(-) forms, respectively. The only difference between these Cel(-) and Cel(+) DNA fragments is deletion of one T residue. Alignment of those two sequences with those deposited in the GenBank database revealed that similar fragments are present in the genomes of some bacterial cellulose producers and are located downstream from open reading frames (ORF) encoding phosphoglucomutase. The meaning of this observation is discussed.

Base Sequence↗

[Effect of carbostimulin and vitamin D3 on activity of glycolytic enzymes of rabbit bones, regenerates and muscles].

Activity of glycolysis enzymes such as: phosphofructokinase, aldolase, phosphoglucomutase, was determined in the regenerate of a bone, bone fragments, native bone and, for the sake of comparison, in the animal muscles after the radius resection and feeding of carbostimulin and its mixture with vitamin D3 for 10 days. On the 12th day after the radius resection the phosphofructokinase activity in rabbits increases in the native and operated bones as compared to that in bones of nonoperative animals. In the group of rabbits which were fed on the mixture of carbostimulin and vitamin D3 the phosphofructokinase activity is 7-2 times as high. In the regenerate of these animals the activity becomes 12 times as high as that in the regenerate of the control rabbits. An analogous increase in the aldolase and phosphoglucomutase reaction rate is observed in the bones of the animals which received carbostimulin and vitamin D3 (4.5 and 7.5 times, respectively). The same tendency to the increase in the activity of these enzymes is observed in the regenerate tissue. In the muscular tissue at this stage of regeneration the activity of the studied enzymes which is usually high in norm decreases.

Animals↗

Isoenzyme analyses of Malaysian Schistosoma, S. mekongi and S. japonicum by isoelectric focusing in polyacrylamide gel.

Isoenzyme patterns of adult Malaysian Schistosoma, S. mekongi and S. japonicum strains were analysed by isoelectric focusing (IEF) in polyacrylamide gel. Enzyme patterns obtained from Malaysian Schistosoma homogenates differed from those of S. mekongi and S. japonicum strains. Malaysian Schistosoma was found to differ from S. japonicum by 8 enzymes, namely phosphoglucomutase, phosphoglucoisomerase, malate dehydrogenase, acid phosphatase, hydroxy-butyrate dehydrogenase, hexokinase and alkaline phosphatase, and from S. mekongi by phosphoglucomutase, malate dehydrogenase, aldolase and alkaline phosphatase. These results and the distinct biology of the parasite suggest that Malaysian Schistosoma is a new species in the S. japonicum complex.

Acid Phosphatase↗

Antivibrionic activity of some glycolytic cycle enzymes of animal cells.

The antivibrionic activity of crystalline preparations of five enzymes of the glycolytic cycle of animals cells was investigated. Phosphorylase "a" (0.5 mg/ml), aldolase (15 mg/ml) and pyruvate kinase (0.1 mg/ml) were found to inhibit the proliferation of Vibrio cholerae cells; phosphoglucomutase and glyceraldehyde-3-phosphate dehydrogenase at a concentration of 0.25 mg/ml were found to be vibriocidal. A mixture of these enzymes containing 0.062 mg/ml of phosphorylase "a" and 0.125 mg/ml of each phosphoglucomutase, aldolase, glyceraldehyde-3-phosphate dehydrogenase and pyruvate kinase showed vibriocidal activity.

Anti-Bacterial Agents↗

The use of isoelectrofocusing in thin layer polyacrylamide and agarose gels as a method for the characterization of Venezuelan Trypanosoma cruzi stocks.

The technique of isoelectrofocusing has been used to compare culture forms of 12 stocks of T. cruzi isolated in different regions of Venezuela. The following seven enzymes have been used for the characterization: unspecific esterase (E.C.3.1.1), malate dehydrogenase (E.C.1.1.1.37), "malic enzyme" (E.C.1.1.1.40), hexokinase (E.C.2.7.1.1), phosphoglucomutase (E.C.2.7.5.1), glucosephosphate isomerase (E.C.5.3.1.9) and glucose-6-phosphate dehydrogenase (E.C.1.1.1.49). The isoelectrofocusing method allows to determine reproducible enzyme patterns of high selectivity and with a number of bands. This permits to recognize possible differences within the T. cruzi-complex much easier than previous methods. The Venezuelan T. cruzi stocks showed a remarkable homogenous behaviour concerning the enzyme profiles. Most of them were identical. Different types seen for "malic enzyme", phosphoglucomutase, and glucose-6-phosphate dehydrogenase were observed in only three stocks, It was not possible to find a clear relationship between the types and the histories of stocks.

Animals↗

Characterization of two strains of selectively bred guinea-pigs. I. Skin transplantation experiments and screening for erythrocyte enzyme polymorphism.

Two strains of guinea-pigs selectively bred for either high (IMM/S) or low (IMM/R) responsiveness to ovalbumin-induced respiratory anaphylaxis were examined for genetic homogenicity by skin transplantation experiments and screened for polymorphism of erythrocyte enzymes (alkaline phosphatase, carbonic anhydrase, esterase D, and phosphoglucomutase). According to the transplantation data it can be concluded that the brother x sister matings have resulted in lines of guinea-pigs with a high degree of genetic homogenicity. The results from the typing of polymorphic enzymes showed that only phosphoglucomutase exhibited different allelic forms among the tested animals, but no correlation was found between this polymorphism and responsiveness to ovalbumin.

Anaphylaxis↗

Morphological identification of simulium sanctipauli and S. yahense in Liberia and comparison of results with those of enzyme electrophoresis.

Simulium sanctipauli and S. yahense have been incriminated as the main vectors of Onchocerca volvulus in the rain-forest zone of Liberia. An accurate identification of the females of the two species which breed in different types of water-courses but are morphologically similar is essential for a proper study of their epidemiological importance and the planning of control measures. Various external characters were examined for their diagnostic value by the comparison of identifications using these characters and those based on enzyme electrophoresis (phosphoglucomutase, trehalase). It was shown that the females of the two species can be separated reliably by the use of external morphological characters. The occasional finding in the same fly of phosphoglucomutase variants typical for each species indicated the possible occurrence of natural hybridization between S. sanctipauli and S. yahense.

Animals↗

[Degradative pathways of glucose 1,6-diphosphate in human erythrocytes].

In this study human erythrocytes have been incubated with various effectors most of which able to decrease the G1, 6P2 content. By using haemolysates and partially purified phosphoglucomutase isoenzymes we provide evidence that the G1, 6P2 decrease can be attributed to the ability of phosphoglucomutase PGM2 isoenzymes to mutate various sugar monophosphates. These isoenzymes, phosphorylated by G1, 6P2, may transfer the phosphate group to monophosphate sugars thus releasing the respective bisphosphate.

Adenine Nucleotides↗

[Glycogen and enzymes involved in its biosynthesis in rat liver during liver carcinogenesis caused by diethylnitrosamine].

An attempt was made to correlate variations in the level of glycogen during chemically induced carcinogenesis (DENA) with changes in the activity of enzymes participating in biosynthesis of this polysaccharide (UDPG-glycosensynthetase, phosphoglucomutase, UDPG-pyrophosphorylase). It is found that in DENA action in the rat liver two phases may be sharply differentiated--initial (the 1st month) with marked alterations in the content of glycogen and the activity of related enzymes, and final one (4-6th month) which is characterized by reduction of glycogen content, a new sharp rise in the activity of phosphoglucomutase and UDPG-pyrophosphorylase, and somewhat decreased activity of UDPG-glycogensynthetase, as compared with the initial values.

Animals↗