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1.
1. Crystalline hexokinase has been isolated from baker''s yeast. 2. Crystalline hexokinase is a protein of albumin type of a molecular weight of 96,000. Its isoelectric point is at about pH 4.8. 3. The method of isolation consists in separating the proteins of an aqueous extract of toluene-treated yeast by means of fractional precipitation with ammonium sulfate and with alcohol. 4. The procedure involves also the separation of several crystalline proteins, including one yellow crystalline protein, which do not possess hexokinase activity. The biological and the physicochemical properties of these proteins are still under investigation. 5. The crystallization of hexokinase proceeds at about 5°C. in the presence of ammonium sulfate and dilute phosphate buffer pH 7.0. 6. Crystalline hexokinase becomes relatively pure after 2 or 3 recrystallizations as tested by solubility, sedimentation in the ultracentrifuge, and electrophoresis. The enzymatic activity remains constant on repeated crystallization. 7. The enzymatic activity is associated with the protein nature of the material. Inactivation is accompanied by denaturation of the protein. 8. Crystalline hexokinase is relatively stable when stored in the form of crystalline filter cake. Solutions of hexokinase in dilute buffers are most stable at pH 5.0. 9. Crystalline hexokinase requires the presence of magnesium ions for its catalytic activity.  相似文献   

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We have developed a rapid and sensitive method for detecting ribonuclease (RNAase). The method makes use of a RNa-Pyronine Y complex which has a different absorption spectrium from that of Pyronine Y alone. When the RNA is hydrolyzed by RNAase, the spectrum of the complex changes to that of unbound Pyronine Y. The resultant decrease in absorbance at 572 nm is linear for final RNAase concentrations ranging from 2 to 45 ng/ml. Optimal assay conditions were 11.5 μg/ml Pyronine Y, 0.56 mg/ml RNA, 80 μmol/ml Tris-HCl buffer, pH 7.8 and 2–45 ng/ml RNAase. The effect of complex concentration, PH, molarity and temperature upon the rate of the reaction were determined.The assay is applicable to crude cell-free extracts.  相似文献   

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A study was made of the enzymatic properties of crystalline desoxyribonuclease. The general effect of the crystalline enzyme on its specific substrate, thymus nucleic acid, was found to be essentially the same as described by previous workers for the digestive action of crude preparations of the enzyme. The digestive action consists mainly in splitting thymus nucleic acid into fragments approaching the size of tetranucleotides. The digested nucleic acid is diffusible through collodion or cellophane membranes and is non-precipitable with strong acid, alcohol, or proteins. The digestion of thymus nucleic acid by desoxyribonuclease is accompanied by the liberation of one atom equivalent of free acid per four atoms of nucleic acid phosphorus. Crystalline desoxyribonuclease acts very slowly, if at all, in the absence of magnesium (or manganese) ions. The optimal concentration of magnesium ion required increases with the increase in concentration of the substrate but is independent of the enzyme concentration. The optimal pH range for the action of crystalline desoxyribonuclease is 6.0 to 7.0. A study was made of the kinetics of the digestion of thymus nucleic acid as manifested mainly by the gradual formation of acid-soluble split products. At low concentrations of nucleic acid, the process approximates closely a reaction of the first order, the unimolecular constant being independent of the concentration of desoxyribonuclease in the digestion mixture. At relatively higher concentrations of substrate, however, the initial rate of reaction decreases rapidly with the increase in concentration of substrate, and the reaction as a whole is represented by non-symmetric S-shaped curves apparently too complicated for a simple rational interpretation.  相似文献   

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《Biochemical medicine》1976,15(1):28-33
A spectrophotometric method for the measurement of 10−1–10−4 ng/ml of bacterial endotoxin in plasma is described which depends on the reaction of endotoxin with Limulus crab lysate and the removal from plasma of an inhibitor to the Limulus system by Bio-Gel P-200 filtration. Sensitivity is achieved by recorder scale expansion and by a linear transformation of data.  相似文献   

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A convenient automated method for measuring inorganic phosphate based on the malachite green reaction with a phosphomolybdate complex has been developed. Less than 100 pmol of inorganic phosphate can be readily quantitated by the method which utilizes standard AutoAnalyzer equipment. Inorganic phosphate is measured in sample volumes of less than 0.1 ml and without interference by a number of phosphorylated metabolic intermediates or nucleotides. This methodology is especially useful in the analysis of hydrolytic processes involving phosphorylated substrates.  相似文献   

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We have developed a spectrophotometric assay method which continuously records esterase activity at 510 nm by monitoring absorbance changes due to the formation of a diazo dye complex. In our method, α-naphthyl ester substrates are hydrolyzed by enzymatic action to α-naphthol which couples to Fast Blue RR salt (a diazonium salt) forming a diazo dye complex. Our method is unique in directly monitoring the formation of the diazo dye complex without extracting the color of the complex as in other methods that use naphthyl esters and diazo coupling of reaction products. The method appears to be limited to α-naphthyl ester substrates, however, since β-naphthyl esters did not give a linear change in absorbance in the enzymatic reactions tested. With this assay method, one can use a single substrate both to determine esterase units quantitatively in solution and to detect esterase staining activity on gel electrophoresis.  相似文献   

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Phosphatidylcholine phosphatidohydrolase (EC 3.1.4.4, phospholipase D) catalyzes the hydrolysis of phosphatidylcholine to phosphatidic acid and choline. We have developed a spectrophotometric assay for phospholipase D using choline kinase, pyruvate kinase, and lactate dehydrogenase to couple the release of choline with the oxidation of NADH. The assay was linear both with time and with enzyme concentration. The assay should prove useful for continuous monitoring of enzyme activity, determination of initial rates of reaction, and detailed kinetic studies of phospholipase D. The method is limited to analysis of purified preparations of phospholipase D lacking competing activities to the coupled system.  相似文献   

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A general method for plasmid isolation in lactobacilli   总被引:10,自引:0,他引:10  
A simple procedure for rapid isolation and detection of plasmid DNA fromLactobacillus species is described. Using an alkaline-detergent lysis method, plasmid DNA was released and characterized from cells treated with either mutanolysin or lysozyme for 1 h at 0°C. Treatment of cells with either enzyme at 37°C for 1h was detrimental to plasmid isolation and charaterization in someLactobacillus species. The procedure was effective with small volumes of cells and allowed rapid characterization of plasmid DNA inLactobacillus plantarum, Lactobacillus acidophilus, Lactobacillus helveticus, andLactobacillus bulgaricus strains.  相似文献   

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Some of the synthetic chromophoric substrates of various enzymes cannot be used for direct spectrophotometric recording of the reactions, when a difference between the pH optimum of the enzyme reaction and the pH of maximum absorption of the released chromophore exists. In the present paper we describe a new method for following the time course of the spleen exonuclease-catalyzed reaction with thymidine 3'-monophospho-p-nitrophenyl ester as a substrate, based on the difference obtained in the absorbency of the substrate and its products in the far UV (at 330 nm). This difference, not published before, permits direct spectrophotometric recording of the amount of the hydrolyzed chromophoric substrate in acidic pH, whereas the maximum absorption of the product as accepted in the literature, is in alkaline pH. The molar absorption coefficient of the measurement at pH 5.7 is determined to be epsilon = 522 M-1.mm-1.  相似文献   

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A sensitive and rapid spectrophotometric method for determination of glucose-6-phosphatase activity is described. Glucose formed by the enzyme is oxidized by glucose oxidase to gluconolactone and hydrogen peroxide. The latter, phenol, and 4-aminoantipyrine are converted by peroxidase to quinoneimine. The formation of quinoneimine is followed directly on a spectrophotometer at 510 nm. The method described is as sensitive and accurate as conventional assays based on determination of phosphate released, and also works well in phosphate buffers.  相似文献   

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A spectrophotometric method for the determination of arginase (EC 3.5.3.1) is presented. Arginase is coupled to urease and glutamate dehydrogenase and the decrease in absorbance at 340 nm due to the oxidation of NADPH is followed. The method is rapid, is sensitive, is economical and permits continuous monitoring. The initial velocities were directly proportional to the enzyme concentrations between 0.06 and 0.30 units per 0.5 ml. The Lineweaver-Burk plot yielded positive allosteric behavior for the tetrameric enzyme. The K' and the Hill coefficient, n, calculated from Hill plot were found to be 4.7 mM and 1.26 (r = 1.00), respectively. These values are in good agreement with the literature.  相似文献   

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A novel spectrophotometric method, based upon Raman spectroscopy, has been developed for accurate quantitative determination of nucleoside triphosphate phosphohydrolase (NTPase) activity. The method relies upon simultaneous measurement in real time of the intensities of Raman marker bands diagnostic of the triphosphate (1115 cm(-1)) and diphosphate (1085 cm(-1)) moieties of the NTPase substrate and product, respectively. The reliability of the method is demonstrated for the NTPase-active RNA-packaging enzyme (protein P4) of bacteriophage phi6, for which comparative NTPase activities have been estimated independently by radiolabeling assays. The Raman-determined rate for adenosine triphosphate substrate (8.6 +/- 1.3 micromol x mg(-1) x min(-1) at 40 degrees C) is in good agreement with previous estimates. The versatility of the Raman method is demonstrated by its applicability to a variety of nucleotide substrates of P4, including the natural ribonucleoside triphosphates (ATP, GTP) and dideoxynucleoside triphosphates (ddATP, ddGTP). Advantages of the present protocol include conservative sample requirements (approximately 10(-6) g enzyme/protocol) and relative ease of data collection and analysis. The latter conveniences are particularly advantageous for the measurement of activation energies of phosphohydrolase activity.  相似文献   

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