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1.
  • 1.1. The major phospholipase A has been purified to electrophoretic homogeneity from the venom of Vipera russelli (Russell's viper).
  • 2.2. The molecular weight of the purified enzyme was estimated to be 31,000 by Sephadex G-75 gel filtration chromatography and 29,000 by SDS-polyacrylamide gel electrophoresis. The enzyme exhibited an apparent Km value of 2.3 × 10−2 M.
  • 3.3. The phospholipase A showed edema forming, indirect hemolytic and myonecrotic activities but not hemorrhagic activity.
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2.
  • 1.1. The major phospholipase A2 (PLA-DE4) of the venom of Trimeresurus purpureomaculatus (shore pit viper) has been purified to electrophoretic homogeneity.
  • 2.2. The isoelectric point of the purified enzyme was determined to be 4.20, and the mol. wt was 31,700 as estimated by Sephadex G-75 gel filtration chromatography; and 14.000 as estimated by SDS-polyacrylamide gel electrophoresis.
  • 3.3. The purified enzyme hydrolyzed phosphatidylcholine (PC) faster than phosphatidylethanolamine (PE), whereas phosphatidylserine (PS) was not hydrolyzed at all (PC > PE > PS = 0). However, in reaction system consisted of mixtures of PC and PS, phosphatidylserine was effectively hydrolyzed by the enzyme.
  • 4.4. The phospholipase A2 exhibited edema-forming activity but not hemolytic, hemorrhagic or anticoagulant activities. It was not lethal to mice at a dosage of 10 μg/g by i.v. route.
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3.
  • 1.1. Phospholipase A2 was isolated from Agkistrodon bilineatus venom by Sephadex G-75 and CM-Cellulose column chromatographies.
  • 2.2. The purified phospholipase A2-I gave a single band on disc polyacrylamide gel electrophoresis, isoelectric focusing and sodium dodecyl sulfate polyacrylamide gel electrophoresis.
  • 3.3. The enzyme preparation had a molecular weight of 14,000, isoelectric point of pH 8.77 and possessed 123 amino acid residues.
  • 4.4. The purified phospholipase A2 possessed lethal, indirect hemolytic and anticoagulant activities.
  • 5.5. The enzyme hydrolyzed the phospholipids phosphatidyl choline (PC), phosphatidyl ethanolamine (PE), phosphatidyl inositol (PI) and phosphatidyl serine (PS).
  • 6.6. The concentration of mouse diaphragm was inhibited and the contraction of guinea pig left atrium was increased by phospholipase A2-I.
  • 7.7. Phospholipase A2 activity of this preparation was inhibited by ethylenediamine tetraacetic acid, p-bromo phenacyl bromide, n-bromo succinimide or dithiothreitol, but not by diisopropyl fluorophosphate or benzamidine.
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4.
  • 1.1. Two types of acid phosphatases from sea urchin eggs and embryos were studied in three Japanese species, Hemicentrotus pulcherrimus, Anthocidaris crassispina and Pseudocentrotus depressus.
  • 2.2. Acid phosphatase type 1, designated AcP-1, hydrolysed only flavin mononucleotide besides p-nitrophenylphosphate. The activity of AcP-1 was not inhibited by NaF and tartrate. This enzyme showed molecular weight between 14,000 and 16,000 by gel filtration through Sephadex G-75.
  • 3.3. The higher molecular weight type of acid phosphatase, designated AcP-2, showed relatively high substrate specificity toward ADP and ATP. Molecular weight of AcP-2 ranged from 42,000 to 48,000 by gel filtration through Sephadex G-100.
  • 4.4. Some properties of AcP-2 from Sphaerechinus granularis embryos are also described.
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5.
  • 1.1. Beta-trichosanthin was isolated from root tubers of Trichosanthes cucumeroides with a procedure involving acetone fractionation, ion exchange chromatography on CM-Sepharose and DEAE-Sepharose and gel filtration on Sephadex G-50.
  • 2.2. The protein was homogeneous by SDS-polyacrylamide gel electrophoresis, polyacrylamide gel electrophoresis, immunodiffusion and immunoelectrophoresis. It possessed a molecular weight of 28,000 and was a strongly basic glycoprotein.
  • 3.3. It was immunochemically identical to trichosanthin but different from alpha- and beta-momorcharins.
  • 4.4. It possessed potent abortifacient and ribosome-inactivating activities. In the latter type of activity it was more potent than trichosanthin.
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6.
  • 1.1. A third form (D3) of cyclic nucleotide phosphodiesterase from Rhizobiumfrediiv/as detected and characterized for the first time.
  • 2.2. The enzyme could hydrolyse both cyclic AMP and cyclic GMP with apparent Km for cyclic AMP of approx. 0.2 μM.
  • 3.3. D3 cyclic nucleotide phosphodiesterase had a pH optimum of about 6.0 when hydrolysing cyclic AMP.
  • 4.4. The enzyme lost almost all its activity when heated to 60°C for 20 min.
  • 5.5. Gel filtration with Sephadex G-100 gave a mol. wt of approx. 42.5 kD for the native enzyme.
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7.
  • 1.1. A cathepsin L-inhibitor complex was purified from the white muscle of chum salmon (Oncorhynchus keta) by a series of chromatographies on DEAE-Sephadex, con A-Sepharose and Sephadex G-150.
  • 2.2. The mol. wt of the complex was estimated to be 50,000 by gel filtration. The complex per se showed little activity of cathepsin L, but it became active when incubated at an acidic pH.
  • 3.3. SDS-PAGE analysis and an experiment of activation by acidification indicated that the complex consisted of the 37 or 30 kDA-form of cathepsin L and the 15 kDa-endogenous cysteine protease inhibitor.
  • 4.4. The enzyme-inhibitor complex was considered to be formed when cathepsin L leaks out of the lysosome in vivo or is freed from the lysosome when the tissue is artificially destroyed.
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8.
  • 1.1. The activities of S-adenosylmethionine decarboxylase (EC 4.1.1.50) were measured in cell extracts of mantle, hepatopancreas and foot from Mytilus edulis.
  • 2.2. The apparent molecular weights of the enzymes estimated by gel filtration chromatography were 65,000 ± 10,000.
  • 3.3. The enzymes do not require bivalent cations for catalysis and show optimum pH between 7.0–8.0 in phosphate buffer.
  • 4.4. The hepatopancreas enzyme shows different behavior to the other two enzymes against temperature and its activity is strongly inhibited by NH4+.
  • 5.5. The apparent Kms for S-adenosylmethionine were found to be 300, 200 and 250 μM for the hepatopancreas, mantle and foot enzymes, respectively.
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9.
  • 1.1. Four proteinase inhibitors (DE-1 to DE-4) were purified from Erythrinu caffra seed by gel filtration on Sephadex G-50 followed by ion-exchange chromatography involving DEAE-cellulose and DEAE-sepharose.
  • 2.2. They comprise 164–166 amino acid residues (mol. wt 18,100) including 4 half-cystine residues and resemble the Kunitz-type proteinase inhibitors.
  • 3.3. The N-terminal primary structure of DE-3 revealed also homology with those of the Kunitz-type inhibitors. For DE-1, DE-2 and DE-4 no free N-terminal amino acid was found.
  • 4.4. DE-1 contains a potent inhibitor for both porcine trypsin and bovine α-chymotrypsin. Whereas DE-2 inhibits a-chymotrypsin strongly and has practically no action on trypsin, DE-3 inhibits both trypsin and a-chymotrypsin strongly. DE-4 is a potent inhibitor for trypsin but it binds a-chymotrypsin only weakly.
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10.
  • 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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11.
  • 1.1. Aminopeptidase N was selectively released from larval midgut of silkworm, Bombyx mori, by phosphatidylinositol-specific phospholipase C, and purified to a homogeneous state by ion exchange, gel filtration. Con A-Sepharose and 4-aminobenzyl phosphonic acid-agarose column chromatographies.
  • 2.2. The purified aminopeptidase N preparation showed 190.8 U/mg of specific activity. Its molecular weight was estimated to be around 100 kDa by sodium dodecyl sulfate-polyacrylamide gel electrophoresis.
  • 3.3. Purified aminopeptidase N molecule preferentially hydrolyzed Leu-, Ala- and Met-p-nitroanilide as substrates. Especially, Leu-p-nitroanilide proved to be the best substrate for aminopeptidase N from larval midgut of silkworm.
  • 4.4. By treatment with phosphatidylinositol-specific phospholipase C, two other hydrolases, alkaline phosphatase and alkaline phosphodiesterase I, were also solubilized from silkworm midgut.
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12.
  • 1.1. Five major forms of nuclear DNA-dependent RNA polymerases from seven transplantable murine tumors and from five tissues from normal, adult, male Swiss mice (Mus musculus) were separated chromatographically on DEAE-Sephadex A-25. Forms Ia and Ib were insensitive to α-amanitin, whereas forms IIa and IIb were highly sensitive and form III was slightly sensitive.
  • 2.2. The polymerases from all tumors or ascites tumors only were compared statistically with those from the normal tissues in regard to elution patterns, specific activities, activities per mg of nuclear DNA. degrees of purification and yields. Similarly, individual tumors were compared with homologous normal tissues. All parameters were characterized by relatively large variance.
  • 3.3. Activities of all RNA polymerases per mg DNA were higher in all tumors compared with normal tissues. The order of statistical significance of these differences was lib > III > IIa > Ib > Ia.
  • 4.4. Activities per mg DNA of all RNA polymerases from 6C3HED and L1210 tumors, with the exception of L1210 tumor enzyme III, were significantly greater than those from spleen, but only the activities of Lewis lung tumor enzyme IIb and of Taper hepatoma enzymes Ia and III were higher than those from the homologous tissues, lung and liver, respectively.
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13.
  • 1.1. 3-hydroxykynureninase in human liver was present in cytosol and mitoehondria.
  • 2.2. The cytosolic enzyme and mitochondrial enzyme had the same physiological and enzymic properties.
  • 3.3. The enzyme had a mol. wt of 130,000 by gel filtration and isoelectric point of pH 5.9.
  • 4.4. The enzyme was active for 3-hydroxykynurenine and kynurenine, and its activity ratio was 15:1. The apparent Km values of the enzyme were 7.7 × 10−5M for 3-hydroxykynurenine, 1.0×10−3M for kynurenine and 2.5 × 10−6M for pyridoxal 5'-phosphate with 3-hydroxykynurenine.
  • 5.5. Some other properties of purified enzymes are described.
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14.
  • 1.1. Acid DNase from monkey liver lysosomes was purified to homogeneity by salt extraction of lysosomal membranes at pH 3.8; (NH4)2SO4 fractionation; low salt precipitation; SP-C50 and G-150 Sephadex chromatography; and polyacrylamide gel electrophoresis.
  • 2.2. The pH for optimum activity was dual in character with a labile optimum at pH 3.8 and a less active but stable one at pH 4.2
  • 3.3. The estimated molecular weight was 40 K and the pl was 4.4.
  • 4.4. Inorganic ions such as Ca2+, Mg2+, Mn2+ and SO42− were more than 80% inhibitory at 10-mM levels. Fe3+ ions were 80% inhibitory at 0.1-mM levels. 15. Nad at 100 mM is essential for activity but becomes 100% inhibitory above 200 mM.
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15.
  • 1.1. Two carboxypeptidase-A type of enzymes and two carboxypeptidase-B type of enzymes effecting hydrolysis of Hipp-l-Phe and Hipp-l-Arg respectively, have been purified from E. superba using gel filtration, affinity chromatography and FPLC-anion exchange chromatography. In addition an aminopeptidase has been partly purified.
  • 2.2. The carboxypeptidases had mol. wts of 27,000 (carboxypeptidase A) and 31,000 (carboxypeptidase B).
  • 3.3. Carboxypeptidase A exhibited a broad pH optimum with a maximum at pH 5.5–6.5, whereas carboxypeptidase B had a more narrow pH-optimum with a maximum at pH 7. The aminopeptidase had an optimum at about pH 8.7.
  • 4.4. The carboxypeptidases were inhibited by the chelating agent 1,10-phenanthroline.
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16.
  • 1.1. The specific activity of GMP synthetase was measured in several human tissues and found to be highest in cultured skin fibroblasts, followed by bone marrow, leukocytes, erythrocytes. placenta, and liver.
  • 2.2. The enzyme from fibroblasts was purified approximately 50-fold by ammonium sulfate fractionation and gel filtration.
  • 3.3. The Km values were determined to be 4.9μM for XMP, 270μM for ATP. and 340 μM for glutamine.
  • 4.4. Ammonium sulfate could replace glutamine as the amino donor but was much less efficient.
  • 5.5. The enzyme was specific for ATP as the energy source.
  • 6.6. Unlike the calf thymus enzyme, the human enzyme has no requirement for a reduced sulfhydryl compound.
  • 7.7. Human GMP synthetase is inhibited by ATP, dATP, azaserine, and hydroxylamine.
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17.
  • 1.1. The acid phosphatase (AcPase, EC 3.1.3.2) IV from rat testicular tissue was purified to apparent homogeneity.
  • 2.2. The enzyme displays a native molecular weight of 70 kDa determined on gel permeation chromatography on a Sephadex G-100 column and 68 kDa using linear 5–20% sucrose density gradient centrifugation. The subunit molecular weight on SDS-PAGE analysis is 67 kDa, suggesting that the enzyme is a monomeric protein.
  • 3.3. The enzyme does not bind to Concanavaline A-Sepharose 4B column, indicating that it is not a glycoprotein.
  • 4.4. The rat testis AcPase IV is a metal activated enzyme in which Mg2+ is the metal activating agent with a Ka, = 0.88 × 10−3 M. The Michaelis constant for p-nitrophenylphosphate, in the presence of saturating concentrations of Mg2+ ions, is 0.23 × 10−3 M.
  • 5.5. The enzyme preferentially hydrolizes p-nitrophenylphosphate, phenylphosphate and ATP.
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18.
  • 1.1. On the basis of its immunoreactivity with a polyclonal antiserum to dog prostate kallikrein in Western blot experiments, a 30 kDa protein was purified from the pancreas of the dog using ion-exchange and gel filtration chromatography.
  • 2.2. That protein was identified as the anionic trypsin by its NH2-terminal amino acid sequence.
  • 3.3. The immunoreaction occurred despite an overall amino acid homology which was limited to 39% between the prostate kallikrein and anionic trypsin.
  • 4.4. Otherwise, the anti-prostatic kallikrein antiserum was rather specific since it did not react with dog cationic trypsin, dog renal kallikrein and human prostate specific antigen.
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19.
  • 1.1. Two small, abundant calcium-binding proteins were isolated from pig granulocytes. They were named p7A and p7B. Relative molecular masses were approx. 32,000 for p7A and 13,000 for p7B, when obtained by Sephadex G-75 gel filtration, while it was 7000 for both proteins by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE).
  • 2.2. N -terminal sequence analysis suggests that p7A is homologous to human and mouse MRP-8 and that p7B may be related to human and mouse MRP-14, though some properties of the latter—such as mobility on SDS-PAGE—were found to be different. In addition, p7A and p7B could be resolved under native conditions, contrasting with the fact that human and mouse MRP-8/MRP-14 form noncovalent complexes.
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20.
  • 1.1. A red-fluorescent blue protein (P600) was purified from the digestive juice of the silkworm (Bombyx mori L.) larvae raised on mulberry leaves.
  • 2.2. The purified protein was electrophoretically homogeneous and showed the absorption maxima at 601.5 nm and 278 nm, and the fluorescence maximum at 621 nm.
  • 3.3. The molecular weight was estimated to be 540,000 by gel filtration on Sepharose CL-6B. Polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate suggests that the protein consists of two heterogeneous polypeptide subunits with a mol. wt of 15,000 and 18,000.
  • 4.4. The P600 contains excess acidic amino acid residues over basic groups. The polarity and pI were 45.5% and 4.6, respectively.
  • 5.5. The production of H2O2 was observed in the presence of P600 upon illumination.
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