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1.
  • 1.1. γ-Glutamyltranspeptidase is present in echinoderm eggs and larvae: in homogenates the level of activity is comparable to that of rat cerebral cortex.
  • 2.2. In eggs of Lytechinus pictus, fertilization induces an early rapid and sustained (5 min–6 hr) 37% increase in the activity of γ-glutamyltranspeptidase in homogenate fractions.
  • 3.3. Relative to these homogenate levels, the specific activity of γ-glutamyltranspeptidase are ≈60% lower in 40,000 g supernatant fractions and 2.7-fold higher in 40,000 g particulate fractions in both unfertilized and 15 min post-fertilized Lytechinus pictus eggs.
  • 4.4. The subcellular distribution of γ-glutamyltranspeptidase is the same in both unfertilized and 15-min post-fertilized Lytechinus pictus eggs: 78% in 40,000 g particulate fractions, 22% in 40,000 g soluble fractions.
  • 5.5. In both unfertilized and 15 min post-fertilized eggs of Lytechinus pictus the enzyme responds to heat (50 vs 37°C) by activation in a similar manner: 1.72- and 1.68-fold homogenates; 2.6- and 3.0-fold in supernatants; 1.97- and 1.90-fold in particulate fractions.
  • 6.6. In homogenates of Pisaster ochraceous larvae, γ-glutamyltranspeptidase activity increases steadily during the course of larval development: relative to the low activity at day 5, activities exhibit an increase of 1.2-, 2.0-, 3.1- and 5.4-fold at days 10, 16, 22 and 28, respectively.
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2.
  • 1.1. Subcellular distribution of (NA+, K+-ATPase and ouabain-insensitive ATPase (Mg2+-ATPase) are compared in branchial tissues of the euryhaline crab, Eriocheir sinensis, acclimated to fresh water.
  • 2.2. Both the anterior and posterior gills contain cAMP-dependent protein kinase and endogenous protein substrate for phosphorylation.
  • 3.3. Phosphorylation occurs in both “particulate” and “soluble” subcellular fractions but its stimulation by cAMP is restricted to the “soluble” fraction.
  • 4.4. serotonin (5-HT) and dopamine receptors are present only in the “light particulate” fraction isolated from the posterior gills.
  • 1.(a) Serotonin and dopamine have no effect on the phosphorylation observed in a subcellular fraction alone.
  • 2.(b) Activation of the phosphorylation by serotonin and dopamine is found when the soluble fraction (source of cAMP-dependent protein kinase) is added to the fraction P3 from the posterior gills.
  • 3.(c) No activation occurs with the fractions P3 as well as P1 or P2 (not shown) from anterior gills of fresh water crab.
  • 4.(d) Cyproheptadine, a serotonin receptor antagonist, inhibits the 5-HT dependent increase in phosphorylation.
  • 5.(e) The dopamine receptor antagonist, chlorpromazine, inhibits dopamine-stimulated phosphorylation.
  • 6.5. Ouabain mimics the effect of cyproheptadine on the serotonin-stimulated phosphorylation found in the posterior gills.
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3.
  • 1.1. The sialidase activity of human thymocyte was examined by a fluorogenic assay.
  • 2.2. These studies revealed that human thymocyte sialidase activity is essentially acid-active and membrane-bound since 59.6% and 33% of the total activity was recovered in the lysosome-enriched and microsomal fractions, respectively.
  • 3.3. A weak activity was also detected in the cytosolic fraction.
  • 4.4. However, the acidic optimum pH of this soluble sialidase was at variance with the general concept of mammalian soluble sialidases which are known to be optimally active at more neutral pH.
  • 5.5. This acidic soluble sialidase seems to be a general characteristic of the human T-cell lineage since examination of mature circulating T-cells revealed that they contain a soluble sialidase activity similar to that observed in thymocytes.
  • 6.6. Analysis of mature and immature thymocyte subpopulation obtained by differential PNA agglutination indicated that this enzymatic system was not altered during the course of thymic maturation.
  • 7.7. These results suggest that unlike in T-cell activation where changes in the level of sialidase activity were shown to influence the extent of cell surface sialylation and thereby the cell physiology, this enzymatic system seems not to be involved in the fluctuation of cell surface sialic acid content observed during thymic maturation.
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4.
  • 1.1. Phenoloxidase activity and wound melanization was studied in five species of grasshoppers representing the subfamilies Melanoplinae and Oedipodinae.
  • 2.2. Most of the phenoloxidase activity was detected in the plasma fraction of grasshopper whole-body homogenates and supernatant fractions of the hemolymph. The species representing the Oedipodinae had 20–50% higher percentage of the total phenoloxidase activity associated with particulate matter from a whole-body homogenate when compared to the Melanoplinae.
  • 3.3. Phenoloxidase activity could not be detected in sclerotized cuticle of adult grasshoppers.
  • 4.4. The phenoloxidase existed as a zymogen which could be activated by chymotrypsin and inhibited by KCN and NaCN while EDTA showed no effect. It had optimum activity at 37°C and pH 7.3.
  • 5.5. These findings are discussed in relation to wound repair and immune responses to infection in grasshopper species.
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5.
  • 1.1. Phosphatidylinositol phospholipase C (PI-PLC) treatment of rachitic rat matrix vesicles (MVs) released about 80% of membrane-bound alkaline phosphatase (ALP), AMPase, PPiase into the media.
  • 2.2. About 20% hydrolytic activity was not released from MV membranes by PI-PLC treatment.
  • 3.3. SDS-polyacrylamide gel electrophoresis and Western blot analysis showed only one immunoreactive protein corresponding to the molecular weight of ALP present in the soluble fraction after PI-PLC treatment.
  • 4.4. The specific activity of the released ALP was at least 5-fold higher than the residual activity.
  • 5.5. After PI-PLC treatment, MVs also demonstrated an 80% reduction of AMP- or βGP-dependent calcium deposition.
  • 6.6. The soluble fraction containing 80% of ALP activity was unable to support calcium deposition. The mixing of the soluble and insoluble fractions after PI-PLC treatment failed to fully restore calcium-depositing activity.
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6.
  • 1.1. Searching for endogenous proteolytic activities converting the membrane form of dopamine β-hydroxylase (dopamine β-monooxygenase, DBH) into the soluble and releasable form, DBH was monitored enzymatically and immunologically in aqueous and detergent-solubilized extracts of the adrenomedullary fractions.
  • 2.2. Degradation of the soluble DBH and acidic chromogranins by activation of endogenous proteases occurred during lysis in H2O.
  • 3.3. Shifts in the hydrophobicity of the membrane DBH were also apparent. Loss in enzyme protein or activity was, on the other hand, not observed for bufier-dialysed CG (pH 5–6).
  • 4.4. Limited proteolysis within the membrane phase was, however, indicated by the shift towards dominance of the intermediate hydrophobic DBH in the buffer-dialysed CG.
  • 5.5. By two-dimensional, crossed immunoelectrophoresis with cationic detergent the microsomal DBH was immunologically identical to the granule-bound enzyme but differed from the latter in molecular heterogeneity and in susceptibility to proteolytic solubilization by endogenous protease activities.
  • 6.6. DBH in the membranes of the chromaffin granules was proteolytically solubilized at pH 6–8 and the soluble DBH further degraded at pH 5.
  • 7.7. The results indicate that a post-translational conversion of the amphiphilic DBH into the soluble form, initiated at the level of the microsomes, may continue within the light and the heavy granule fractions which contain several DBH-converting and degrading proteolytic activities with acid optima.
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7.
  • 1.1. A lipoxygenase preparation was obtained from Thermoactinomyces vulgaris and was purified by affinity chromatography on a linoleyl aminoethyl sepharose column.
  • 2.2. Two active fractions were obtained.
  • 3.3. The fraction obtained by elution with 100 mM borate buffer pH 9.0 was used in the subsequent work.
  • 4.4. Th. vulgaris lipoxygenase oxidized linoleic acid into two products: 13-HPOD and 9-HPOD at a ratio of 44 to 56, respectively.
  • 5.5. The identification and characterization of the isomers was done by HPLC, I.R. and mass spectrometry.
  • 6.6. When arachidonic acid was used as substrate, 15-HPETE and 15-HETE were found to be the main enzymatic products.
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8.
  • 1.1. myo-Inositol decreases the synthesis of phosphatidylglycerol by type II cells isolated from fetal rat lung. Inositol addition also increases the synthesized amount of surfactant phosphatidylinositol. These observations indicate that at least part of the decreasing effect of inositol on phosphatidylglycerol formation is the result of competition between phosphatidylglycerol and phosphatidylinositol synthesis for a common pool of CDPdiacylglycerol.
  • 2.2. Studies on the subcellular localization of enzymes measured under optimal conditions suggested that the enzymic activity required for the formation of phosphatidylglycerol is located mainly in the mitochondria, but most likely also for a small part in the endoplasmic reticulum, while the enzymic activity required for phosphatidylinositol formation is located in the endoplasmic reticulum.
  • 3.3. Inositol was found to inhibit glycerolphosphate phosphatidyltransferase in the microsomal fraction but not in the mitochondrial fraction derived from the type II cells, indicating that the competition between phosphatidylglycerol and phosphatidylinositol synthesis for CDPdiacylglycerol takes place in the endoplasmic reticulum.
  • 4.4. This latter observation together with the observation of a switch-over from surfactant phosphatidylinositol to phosphatidylglycerol production around term indicate that the endoplasmic reticulum is the intracellular site of surfactant phosphatidylglycerol production.
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9.
  • 1.1. Two cyclic AMP-dependent protein kinases—Fraction I and II—have been isolated from chick liver soluble preparation on DEAE-cellulose.
  • 2.2. Both fractions have an apparent Km for ATP of 2 × 10−6M, are stimulated maximally by 5 × 10−8 M cyclic AMP and phosphorylate mainly basic proteins—histone and protamine.
  • 3.3. They exhibit various pH values for optimal activity and show differences with respect to both sensitivity to NaCl and substrate specificity.
  • 4.4. The heat-stable protein modulator inhibits the cyclic AMP-dependent protein kinase activity of both fractions, but with cyclic GMP one kinase is stimulated and the other inhibited.
  • 5.5. Slight differences in histone triggered holoenzyme dissociation as well as the lack of difference between their ability for subunit reassociation do not allow to classify these isozymes as protein kinases of Type I and II, according to Corbin et al. (1975).
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10.
  • 1.1. Trehalase (α,α-trehalose 1-d-glycohydrolase, E.C. 3.2.1.28) from cryptobiotic Artemia salina embryos was purified and characterized.
  • 2.2. Most of the enzyme activity was present in an insoluble form and could be solubilized by deoxycholate treatment at high ionic strength and sonication.
  • 3.3. The enzyme had a molecular weight of 75,000 and its isoelectric point was 6.2. It was optimally active at pH 5.6 with a Km = 4.3 × 10−3 M for its natural substrate.
  • 4.4. The enzyme was highly specific for trehalose, only lactose and cellobiose being hydrolyzed to a limited extent.
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11.
  • 1.1. Coelomic fluid of the earthworm, Lumbricus terrestris, contains lipid agglutinins that are primarily glycolipids. They are present in fluid from both immunized (induced) and unimmunized (naturally occurring) worms.
  • 2.2. Lumbricus agglutinins partially purified by Folch extraction followed by silicic acid chromatography, were present in all fractions but in highest concentration in acetone and methanol fractions.
  • 3.3. Immunodetection revealed agglutinin activity in acetone and methanol fractions, but not in the chloroform fraction.
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12.
  • 1.1. The subcellular distribution of nine transition metals (plus four additional elements) was measured in the kidney tissue of the quahog, Mercenaria mercenaria.
  • 2.2. Elemental analyses of the subcellular fractions indicated three main patterns of metal distribution within kidney cells.
  • 3.3. Barium, iron, manganese and lead were associated primarily with kidney granules.
  • 4.4. Cadmium, copper, potassium and magnesium were found mainly in the cytosolic fraction.
  • 5.5. Calcium, phosphorus and zinc were found in all isolated fractions, probably reflecting the important roles that these elements play in bivalve metabolism.
  • 6.6. The organelle composition of the isolated subcellular fractions was determined using marker enzyme assays and microscopic techniques.
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13.
  • 1.1. Pineapple stem extract, consisting of a mixture of the protease bromelain and sulphhydryl protease inhibitors, was fractionated by gel permeation chromatography.
  • 2.2. Inhibitor-containing fractions were further resolved by ion exchange chromatography on DEAE-cellulose, giving 12 chromatographically distinct inhibitory fractions.
  • 3.3. These 12 inhibitory fractions all show an inhibition specificity towards bromelain.
  • 4.4. Reduction, S-carboxymethylation and refractionation of each of these inhibitory fractions gave, for each fraction, two separated peptides of ca 13 and 40 amino acids in length, respectively.
  • 5.5. The amino acid compositions and the N-terminal sequences of these peptides show the inhibitors to be a closely homologous set. Both the constituent peptides of each fraction are microheterogeneous. Each DEAE-cellulose chromatogram peak contains a co-eluting set of iso-inhibitors.
  • 6.6. Structural microvariations within these isoinhibitors have a minor influence on inhibitor activity towards bromelain.
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14.
  • 1.1. The desaturation and elongation of linoleic acid has been studied in homogenates and in subfractions of ovine placental tissue.
  • 2.2. The reaction was characterized in terms of pH and temperature optima, time course and protein concentration.
  • 3.3. Activity was found to be confined to the 11,000g supernatant fraction of the tissue and the results suggest that the enzymes are membrane bound.
  • 4.4. The cytosolic fraction and ATP were required for full activity and the reaction was inhibited by cyanide.
  • 5.5. The properties of the reaction are compared with those of other desaturation systems and their implications with regard to possible reaction mechanisms are discussed.
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15.
  • 1.1. Food consumption, assimilation and passage rates of an elephant shrew, Elephantulus edwardii, on three natural diets (cockroaches, locusts and termites) and one artificial cereal diet (Pronutro) were compared.
  • 2.2. Daily food consumption varies significantly between the diets and was partly related to % assimilation, which was highest on Pronutro and cockroaches (71%) and lowest on termites (31%).
  • 3.3. Throughput times were estimated using soluble (51 Cr-EDTA) and particulate markers in the Pronutro diet. First appearance of the soluble marker (0.5 hr) was significantly earlier than for the particulate marker (1.85 hr); 50% appeared at 3.2 and 3.35 hr for the soluble and particulate markers, respectively.
  • 4.4. The distribution of particulate markers in the digestive tract showed some retention in the stomach, ileum and colon, but rapid movement through the duodenum and very little entry to the caecum.
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16.
  • 1.1. Two fractions of aryl acylamidase (EC 3.5.1.13) were further separated from rat brain extracts at pH 7.5 by ammonium sulfate precipitation and Bio-Gel chromatography.
  • 2.2. 1,2,3,4-Tetrahydro-β-carboline competitively inhibited (67%) fraction-1 but slightly inhibited (13%) fraction-2. Tetrahydroharman, 6-hydroxy-tetrahydroharman and harminic acid slightly inhibited both fractions. Harmalol inhibited fraction-1 but enhanced fraction-2. 6-Methoxy-harman, 6-methoxy-harmalan and harmaline enhanced both fractions.
  • 3.3. Pargyline did not affect either fraction. Methiothepin, cyproheptadine and chlorimipramine inhibited fraction-1 but stimulated fraction-2.
  • 4.4. Neostigmine moderately (30%) inhibited AAA-2 but did not have any significant effect on AAA-1.
  • 5.5. These results indicate that the β-carboline compounds might play a role in regulating activity of AAA-1 and 2 in brain.
  • 6.6. Both fractions might be related to serotonergic neurons but only AAA-2 might be associated with acetylcholinesterase.
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17.
  • 1.1. A lipoxygenase activity was purified from Thermoactinomyces vulgaris and some of its properties were characterized.
  • 2.2. The enzyme showed a temperature activity range of 40–55°C with still significant activity over 60°C.
  • 3.3. The pH of activity on linoleic acid had a broad range with an optimum at pH 6.0 and a weaker one at pH 11.0.
  • 4.4. On arachidonic acid the pattern was narrow bell-shaped with an optimum at pH 6.5.
  • 5.5. The purified lipoxygenase from Th. vulgaris showed an apparent Km of 1 mM and Vmax of 0.84 μmol diene/min/mg protein.
  • 6.6. It was inhibited by the oxidation products, 9-HPOD and 13-HPOD.
  • 7.7. A 160,000 Da molecular weight of the enzyme was determined by molecular filtration. Methionine, tyrosine, tryptophan and cysteine are apparently involved in its activity.
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18.
  • 1.1. Protein tyrosine kinase (PTK) activities were detected in both cytosolic and particulate fractions of cultured vascular smooth muscle cells by using poly (Glu: Tyr; 4:1) as an exogenous substrate.
  • 2.2. The percent distribution of the enzyme activity between these two fractions was 70 and 30 respectively.
  • 3.3. The particulate and not the cytosolic enzyme activity was stimulated by about 4-fold in the presence of non-ionic detergent, Triton X-100 (0.5% v/v).
  • 4.4. The PTK activity in both the fractions was absolutely dependent on the presence of divalent cations such as Mg2+ and Mn2+ which were equipotent in the activation of the enzyme.These data indicate that PTK activity is expressed in cultured VSMC and provide a basis for further studies to examine a possible role of PTKs in growth and proliferation of VSMC.
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19.
  • 1.1. The fat-body soluble fraction from two-day Sarcophaga bullata larvae contain amino acid activating enzymes for nineteen amino acids.
  • 2.2. The level of activity varies with the amino acid substrate.
  • 3.3. The total 32PP-ATP exchange activity of the pupae decreased with age for the first 6 days, then increased to a maximum one or two days prior to emergence of the adults.
  • 4.4. The free amino acid concentration in the pupae decreased during the period when the amino acid activating activity increased.
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20.
  • 1.1. Blood proteins were studied by polyacrylamide disc gel electrophoresis in three species of prairie dogs, Cynomys gunnisoni, C. leucurus, and C. ludovicianus.
  • 2.2. The sera were separated into 13–15 fractions and the three species could be distinguished by both qualitative and quantitative differences in their serum patterns.
  • 3.3. Qualitatively, variations in the occurrence and number of slow albumin fractions are diagnostic at the species leel.
  • 4.4. Quantitative differences were most apparent in variation in the mobility of the major albumin fraction and the transferrin fraction.
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