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1.
  • 1.1. A method for purifying undischarged nematocysts from Hydra and other cnidarians is described.
  • 2.2. Isolated cysts (relative densities 1.22–1.24) evaginate their tubular content even after previous dehydration.
  • 3.3. The cyst wall is permeable to dyes of mol. wts up to 600,000.
  • 4.4. Approximately two-thirds of the cyst's dry wt are soluble proteins. Eighty per cent of them are of low mol. wt and highly anionic, presumably serving as binding sites for Ca2+ and Mg2+.
  • 5.5. The other 20% includes 30 different proteins amongst them toxins and enzymes (phospholipase and little proteases but no collagenase, chitinase or hyaluronidase).
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2.
  • 1.1. Preparation, purification and characterization of a phosphoglycolate phosphatase (PGP)3 isoenzyme from human erythrocytes was achieved by DEAE-Sepharose CL.-6B chromatography and isoelectric focusing using carrier ampholytes. pH 4–6.
  • 2.2. The isoenzyme has an isoelectric point of 5.00 ± 0.05 and could be purified 33.000 fold to a specific activity of 32.7 U/mg of protein. It represents the PGP phenotype 1 consisting of a single isoenzyme.
  • 3.3. The enzyme is composed of two subunits (mol. wt 35,000) which are identical and not connected by SS-bridges.
  • 4.4. At 4°C the isoenzyme is more stable in the pH range of 7–9 than at acid pH values.
  • 5.5. Incubation at 30 and 40°C for 4 hr does not affect the activity of the isoenzyme.
  • 6.6. It has a Km-value of 0.28 mM for phosphoglycolate (PG) as substrate.
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3.
  • 1.1. The extracellular hemoglobin of Daphnia pulex has an apparent molecular weight of 430,000–470,000 by gel chromatography and an S20,w = 16.9 at pH 7.0.
  • 2.2. Purified hemoglobin contains one heme per 18,000–20,000 g protein. The polypeptide chains are heterogeneous with mol. wts between 31,000–37,000. Some high mol. wt (Mr = 53,000–86,000) material is also present.
  • 3.3. The hemoglobin dissociates at pH 10.5 in EDTA into 3S material which can be digested with subtilisin into 16,000 mol wt heme-containing polypeptide chains.
  • 4.4. The amino acid composition of the intact hemoglobin is identical to that of the heme-containing fragments generated by proteolytic digestion of the 3S material.
  • 5.5. These results are consistent with the hypothesis that D. pulex hemoglobin is composed of subunits containig two heme groups per 35,000 mol. wt polypeptide chain.
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4.
  • 1.1. Malate dehydrogenase has been purified from the foot muscle of Patella caerulea by ion-exchange chromatography on DEAE-cellulose, affinity chromatography on Blue Agarose and gel filtration on Sephadex G-150.
  • 2.2. The yield was 23.5% of the initial activity with a final specific activity of 257 U/mg of protein.
  • 3.3. The apparent mol. wt of the native enzyme is approx. 75,000 and it consists of two subunits of mol. wts in the range of 36,000–39,000.
  • 4.4. The enzyme exhibits hyperbolic kinetics with respect to oxaloacetate, NADH and l-malate. The Km values were determined to be 0.055 mM for oxaloacetate, 0.010 mM for NADH and 0.37 mM for l-malate. The pH optima are around 8.4 for the reduction of oxaloacetate and 9.2–9.6 for the reduction of oxaloacetate and 9.2–9.6 for the l-malate oxidation. Vmax and Km values for oxaloacetate change in an opposite manner with respect to pH values.
  • 5.5. Of the various compounds tested, only α-ketoglutarate, citrate and adenylate phosphates were found to inhibit the enzyme activity.
  • 6.6. From the above properties it appears that the reaction of cytoplasmic malate dehydrogenase of P. caerulea foot muscle is a key reaction in the anaerobic pathway and it occurs with the production of malate.
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5.
  • 1.1. Primate liver lysosomal acid DNase is an endonucleolytic enzyme.
  • 2.2. The enzyme has both 3'- and 5'-nucleotidohydrolase activities.
  • 3.3. The oligonucleotides produced by DNase are polymers mainly about 30 mononucleotides long.
  • 4.4. The Arrhenius plot shows a discontinuity with a transition temperature at 47°C, with an activation energy of 107 kJ/mol below and 67 kJ/mol above this temperature.
  • 5.5. The activation enthalpy is 104kJ/mol and the entropy −0.498 kJ/mol/K.
  • 6.6. The enzyme is subject to substrate inhibition and the Km value is 159 × 10−3mM DNA-P.
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6.
  • 1.1. Elastase has been purified from the hepatopancreas of the king crab (Paralithodes camtschatica). Specific activity of the enzyme measured toward Suc-(Ala)3-pNA and Boc-(Ala)3-pNA was 926 and 3700 mUnits per mg of protein, respectively.
  • 2.2. The enzyme is an anion protein (pI 4.5) with an approximate mol.wt of 28.5 kDa.
  • 3.3. The enzyme exhibited a bell-shaped pH-dependence for the hydrolysis of Suc-(Ala)3-pNA with a maximum at 8–8.5. Under these conditions the values of Km and kcat of the crab elastase are 4 mM and 4.75 s−1, respectively.
  • 4.4. The serine elastase is effectively inhibited by elastinal and diisopropylfluorophosphate.
  • 5.5. It is shown that some salts except HgCl2 activate the protease. In the presence of HgCl2 with concentrations of 10 mM and higher, the crab elastase is inactive. SDS and Triton X-100 have no any effect on the activity of crab elastase.
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7.
  • 1.1. A quick and simple procedure is described for purifying kallikrein from human whole saliva. The enzyme has been purified about 2700-fold with a yield of approx. 30%.
  • 2.2. The procedure is based on the immediate fractionation of saliva by ion exchange chromatography. This is followed by a combination of affinity and high performance liquid chromatography.
  • 3.3. The results indicate that another protein component binds to the enzyme at pH 8.0.
  • 4.4. The homogeneity of the enzyme has been demonstrated by gel electrophoresis in the absence as well as in the presence of sodium dodecylsulfate.
  • 5.5. A mol. wt of 40,100±1800 has been calculated from gel electrophores is experiments.
  • 6.6. Sedimentation equilibrium in an analytical ultracentrifuge gave a mol. wt of 39,700.
  • 7.7. The amino acid composition has been determined and it confirms that the enzyme has a low isoelectric point.
  • 8.8. The presence of tryptophan has been demonstrated by absorption and fluorescence spectroscopy.
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8.
Lysozyme from the serum of the plaice, Pleuronectes platessa L., has been purified 78-fold with chitin coated cellulose.
  • 1.2. Further purification on CM-cellulose yielded a single band on acrylamide electrophoresis, exhibiting lysozyme activity.
  • 2.3. The quantitative amino acid composition of plaice serum lysozyme is reported.
  • 3.4. The mol. wt is identical with hen egg white lysozyme.
  • 4.5. A method is described for identifying fractions with lysozyme activity in polyacrylamide gels.
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9.
  • 1.1. The autolysate of earthworms was found to exhibit powerful fibrin and thrombin substrate hydrolyzing activity.
  • 2.2. It also showed a clot-forming activity in the fibrinogen- or plasma-added system.
  • 3.3. Zymography revealed that there were three active components with mol. wts of 40,000, 21,000 and 15,000 in the autolysate.
  • 4.4. The major form with a mol. wt 35,500 (by SDS-PAGE) was further purified. The N-terminal amino acid sequence of this enzyme (16 residues) was similar to that of the swine pancreatic proelastase.
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10.
  • 1.1. Proteins from crystalline styles of twelve species of bivalve mollusc were examined under different gel electrophoresis conditions and stained to reveal both protein and carbohydrate.
  • 2.2. Native extracts of styles produced relatively few protein bands, however denaturation with SDS resulted in much more complex zymograms.
  • 3.3. All species possessed several prominent high mol wt glycoproteins.
  • 4.4. Eulamellibranchia all had a major non-glycosylated protein at approx. 62,000 mol. wt.
  • 5.5. Most Filibranchia had a major non-glycosylated protein at 37,000–50,000 mol. wt.
  • 6.6. Eulamellibranchia were a much more homogeneous group than the Filibranchia.
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11.
  • 1.1. An acid RNase was purified 620-fold from the roe of the fish Cyprinus carpio L. The recovery was 12.4% and the enzyme appeared to be homogenous as judged by the SDS-Polyacrylamide Gel Electrophoresis (SDS-PAGE).
  • 2.2. The enzyme displays maximum activity at pH 5.50, I = 50 mM and the mol. wt is 22,000.
  • 3.3. The purified enzyme shows two molecular forms (pI1 = 4.04, pI2 = 4.75) as revealed by the isoelectric focusing technique.
  • 4.4. The enzyme hydrolyses both Poly(A) and Poly(U) showing a stronger preference for Poly(U), Neither Poly(G) nor Poly(C) was hydrolysed.
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12.
  • 1.1. Fundamental chitin digestion characteristics of Crassostrea virginica crystalline style were investigated.
  • 2.2. Optimum temperature and pH were 34°C and 4.8. respectively.
  • 3.3. The colloidal regenerated chitin (0.56mol/0.5 ml: GlcNAc equivalents) was saturating under all enzyme levels encountered.
  • 4.4. There was no evidence of end product inhibition, even after 100 hr incubation.
  • 5.5. Calculated Km for the chitinase complex was 1.19mM when determined using a 30 min assay, but was only 0.70 mM when determined using a 4.6 hr assay.
  • 6.6. Both Km values are lower than reported for similar assays in other molluscs and for most bacteria.
  • 7.7. Effect of substrate preparation on the kinetics are discussed.
  • 8.8. Eight peaks of chitinase activity were resolved by DEAE-Fractogel ion exchange chromatography.
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13.
  • 1.1. Human milk proteose-peptone fraction contained an average of 45% carbohydrate compared to about 11% carbohydrate present in the bovine milk fraction.
  • 2.2. The human milk proteose-peptone fraction contained Lactobacillus bifidus var. Penn. growthpromoting factors, whereas there was very little such growth-promoting activity in the bovine milk material.
  • 3.3. Polyacrylamide gel electrophoresis showed that human milk proteose-peptone fraction contained 4 major protein components with the respective mol. wts of approx 100,000, 70,000, 30,000, and 13,000. The latter was the most abundant component of human milk proteose-peptone fraction. There was, in addition a very low mol. wt carbohydrate-containing component. Bovine milk proteose-peptone fraction had 3 major protein components with mol. wts of 30,000, 18,000 and 12,000.
  • 4.4. The human milk proteose-peptone component with the mol. wt of 13,000 was identified as α-lactalbumin, the component with the mol. wt of 30,000 was identified as a temperature-sensitive protein probably similar to galactothermin, and the components having mol. wts of 100,000 and 70,000 were closely associated to give a protein of a very high mol. wt. This complex also contained carbohydrate and was thus glycoprotein in nature.
  • 5.5. The low-mol. wt carbohydrate-containing material was identified as being similar if not identical to glycoprotein B previously described.
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14.
  • 1.1. The protein (mol. wt 28.000) consists of four subunits, which are not equivalent as regards the chemical composition, although all of them lack free terminal amino groups.
  • 2.2. The single subunits also possess different conformations since both photosensitized oxidation studies and acrylamide-quenching experiments of the protein fluorescence emission show that the three tryptophyl residues have a different accessibility to the aqueous solvent.
  • 3.3. Circular dichroism and fluorescence polarization studies suggest that suberitine has a remarkable tight three-dimensional organization: e.g., exposure of suberitine to 6 M urea for several hours is necessary to obtain a general unfolding of the protein molecule.
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15.
  • 1.1. Tubulin has been isolated from brain of carp (Cyprinus carpio), acclimated to summer temperatures (16–20°C), and its in vitro reassembly behavior has been characterized.
  • 2.2. Among the striking properties of this tubulin preparation is the temperature profile showing a high level of polymerization at the environmental temperature of carp.
  • 3.3. The critical tubulin concentration for assembly was 0.8 mg/ml, which was higher than mammalian tubulin purified by the cycle procedure.
  • 4.4. The microtubular protein showed three high mol.wt component and a minor component of about 43,000 daltons was also found to copurify with tubulin.
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16.
  • 1.1. Rhodanese from Rhodopseudomonas palustris has been isolated and purified 105-fold with a yield of 3.6 and a sp. act. of 297,900.
  • 2.2. A mol. wt of 16,500 d was obtained, indicating that the Rhodanese from this source is a monomer.
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17.
  • 1.1. Components of the cell surface of Crithidia guilhermei, Crithidia deanei and Crithidia oncopelti were radioiodinated by the iodogen technique. The distribution of proteins in the detergent-poor (DPP) and detergent-enriched phase (DRP) were studied using a phase separation technique in Triton X-114 and one- and two-dimensional polyacrylamide gel electrophoresis in sodium dodecyl sulphate (1D and 2D SDS-PAGE).
  • 2.2. Significant differences were noted in the proteins present in the DRP when the three species were compared.
  • 3.3. Two major bands with mol. wt 28,000 and 56,000 and motility in the pH gradient of 7.4 and 6.3, respectively, were observed in C. guilhermei, but not discernible in C. deanei and C. oncopelti.
  • 4.4. One polypeptide with mol. wt 50,000 and p1 4.9 was identified in the DRP of C. deanei.
  • 5.5. A broad band with mol. wt 68,000–140,000 and pI 4.7–5.5 was clearly observed in the DRP of C. deanei and one or two polypeptides only present in the DPP were observed in the three Crithidia species analyzed.
  • 6.6. Our observations show that C. guilhermei has characteristic surface polypeptides not found in C. deanei and C. oncopelti.
  • 7.7. Our results, in association with those reported by others, show that the phase separation using Triton X-114 offers a simple approach to the separation and further analysis of a select group of proteins from the bulk of the cellular proteins.
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18.
  • 1.1. The sperm-agglutinating factor (SAF) could be induced in the serum of male Nile tilapias, Oreochromis niloticus, by injection of allogeneic sperm.
  • 2.2. Only one class of molecules was demonstrated to be SAF in the serum.
  • 3.3. Analysis on purified SAF revealed it to be a tetrameric molecule of IgM with a mol. wt of 760kD.
  • 4.4. Cross reaction of the IgM with sperm of other teleost species suggests that sperm-specific surface antigens may be in evolution.
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19.
  • 1.1. A Ca-binding component (CaBC) was isolated from the soluble matrix of spicules of the gorgonian Leptogargia virgulata.
  • 2.2. The CaBC is a glycoprotein with apparent mol. wt between 70,000 and 100,000, and contains very high levels of aspartate.
  • 3.3. The CaBC probably plays an important role in the formation of the coral spicules.
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20.
  • 1.1. An alkaline p-nitrophenylphosphate phosphatase has been purified 440-fold from extracts of Hatobacterium halobium.
  • 2.2. The enzyme has an apparent molecular weight of 24,000.
  • 3.3. A Km value for p-nitrophenylphosphate of 1.12mM has been found under optimal conditions.
  • 4.4. The enzyme is selectively activated and stabilized by Mn2+.
  • 5.5. It requires high salt concentrations for stability and maximum activity.
  • 6.6. It displays an unusual restricted substrate specificity of 25 phosphate esters tested, only phosphotyrosine and casein were hydrolysed besides p-nitrophenylphosphate.
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