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Determination of sperm-antibodies in sera of sterile women by affinity-chromatography (affinity-chromatography of sperm-antibodies).

The total amount of humoral sperm antibody protein is determined following its isolation by affinity-chromatography on spermatozoa. Serum proteins are eluted by Sorensen phosphate buffer. Antibodies attached to spermatozoa suspended in Sephadex G 75 columns resist elution by Sorensen buffer. They can be quantitatively washed out by 8 ml Tris HCl-buffer pH 8,9 and be determined as proteins by the Folin-Ciocalteu method.

Adsorption

Colorimetric versus radioimmunological measurement of glycated and non-glycated serum albumin after affinity chromatography.

Affinity chromatography by m-aminophenylboronic acid has been proposed for routine measurement of glycated albumin. We assayed glycated and non-glycated fractions of serum albumin (HSA) eluted by affinity chromatography columns by both a specific RIA method for the human serum albumin (HSA) and by a colorimetric method. Sixteen diabetic patients presented a significantly higher percentage of glycated-HSA than 7 control subjects with both methods, and a strong correlation was found between the values obtained with the two methods. RIA was able to detect a significant concentration of glycated-HSA in all normal subjects, while the colorimetric method was not. The accuracy of separation between the glycated and non-glycated fractions of albumin was tested using [14C]glucose as tracer. When [14C]glycated-HSA purified by Sephadex G25 filtration was chromatographed using the m-aminophenylboronic acid, only 5.3% of the total 14C-radioactivity present in the solution was recovered in the bound fraction, while 44.0% was eluted in non-protein-bound fraction and 54.7% was retained in the column. Our findings confirm that affinity chromatography by m-aminophenylboronic acid can be a useful tool in the monitoring of short glycemic control of diabetic patients. Our data also indicate that the affinity chromatography with m-aminophenylboronic acid does not accurately discriminate between glycated and non-glycated fraction of HSA.

Adult

Designer dyes: 'biomimetic' ligands for the purification of pharmaceutical proteins by affinity chromatography.

Affinity chromatography has been extensively refined over the past few years to meet the more stringent criteria being placed on recombinant proteins as therapeutic products. New developments in the design of selective and stable ligands for affinity chromatography are establishing the technique as a routine tool in process-scale protein purification. Exploitation of sophisticated molecular modelling techniques in conjunction with binding and crystallographic studies has permitted the design of new, highly selective 'biomimetic' ligands for the target proteins.

Binding Sites

Trypsin and affinity chromatography.

Affinity adsorbents for trypsin which were prepared by immobilizing product-type ligands, that is, peptides having C-terminal arginine, proved to be effective not only for preparative purposes but also for basic research on molecular recognition. The properties of the binding site of trypsin were revealed by chromatographic experiments. Quantitative analysis based on the theory of frontal affinity chromatography proved to be extremely effective. As an extension of the product-type ligands, peptide argininals were also used and information on the mechanism of action of these inhibitors was obtained. Anhydrotrypsin, which lost the hydroxyl group of Ser183, was found to gain increased binding ability for product-type compounds. This inactivated enzyme was also used as an immobilized ligand and the unique affinity adsorbent thus prepared proved to be extremely effective for the separation of peptides and recombinant proteins based on their C-terminal structures. High-performance affinity chromatography of trypsin and related enzymes using a polymer-based support was also developed.

Animals

The purification of antimorphine antibodies by affinity chromatography.

Affinity chromatography was employed successfully to purify extensively antimorphine antibodies produced in rabbits. Morphine succinylated at position 6 was attached to bovine serum albumin to make it immunogenic and to Sepharose beads for affinity chromatography. A crude gamma-globulin fraction of antimorphine serum, prepared by salt fractionation, was used for purification. After unbound gamma-globulin was washed off the column with phosphate-buffered saline, two populations of antimorphine antibodies were eluted in succession by two low pH buffers. Each of these two purified antibody fractions had an index of heterogeneity of approximately 1. Immunoelectrophoresis indicated that the antibodies were immunoglobulin G and that they formed a single precipitation band with antirabbit serum. The average association constants for morphine of the two purified antibody fractions were similar and ranged from 4.5 to 4.8 X 10(7) LITERS/MOL-1. A 67-fold purification of the antimorphine antibodies could be achieved by a single pass through an affinity column.

Antibodies

A general method of purification of adenosine deaminase by affinity chromatography.

Affinity chromatography has been used to purify adenosine deaminase from various sources: calf spleen, calf intestinal mucosa, chicken duodena and human erythrocytes. For this purpose a specific inhibitor, 9-(p-aminobenzyl) adenine, was synthesized and covalently joined to agarose. Adenosine deaminase is selectively retained by such an inhibitor-resin when highly impure solutions are chromatographed through it. After elution from the resin with guanylurea, a competitive inhibitor, the enzyme is homogeneous and can be recovered in yields of 80 percent or more and the same number of multiple forms of the enzyme is present in the purified preparation and in the crude extract.

Adenine

Purification of equine infectious anemia virus antigen by affinity chromatography.

Affinity chromatography was performed to obtain highly purified antigen from equine infectious anemia (EIA) virus. After crude antigen was concentrated by polyethylene glycol precipitation of culture fluids from equine dermal cells persistently infected with EIA virus, and after the virus was disrupted with ether, it was added to a column of cyanogen bromide-activated Sepharose 4B to which EIA-specific antibody had been conjugated. The antigen was effectively released from the column with 5M MgCl2 and proved to be highly purified. Passive hemagglutination tests on sera from EAI infections were carried out, using the purified antigen. Results indicated that the passive hemagglutination test with the antigen was a specific laboratory test with high sensitivity for EIA infection.

Animals

Urinary trypsin-inhibitor: extraction from pregnancy urine by affinity chromatography.

Affinity chromatography has led to the extraction of a trypsin inhibitor from urines of pregnant women, with a recovery of about 85%. The inhibitor obtained by this method is fairly pure, but heterogeneous, according to several criteria. The heterogeneity is not the result of the extraction procedure, but it seems to pre-exist in the urine itself.

Chromatography, Affinity

Interaction of lactate dehydrogenase with structurally related triazine dyes using affinity partitioning and affinity chromatography.

Affinity partitioning in aqueous two-phase systems consisting of dextran and dye-liganded polyethylene glycol was employed to study the interaction of lactate dehydrogenase (LDH) from rabbit muscle (E.C. 1.1.1.27) with Procion Red HE-3B and four structurally related derivatives of this dye in order to follow the significance of the terminal rings of Procion Red HE-3B for the strength of interaction. The study revealed that the arrangement of the two 1-amino-8-naphthol-3,6-disulphonic acid rings seems to be a prerequisite for the interaction of azonaphthol dyes with LDH. The negatively charged sulfonic acid group at the terminal rings of Procion Red HE-3B enhances the affinity of the ligand for LDH significantly. The removal of this sulphonic acid group or splitting off the complete terminal rings decreases the affinity to LDH and improves the competitive effect of NAD+. The results of affinity partitioning are compared with those of affinity chromatography and kinetic data. The usefulness and the choice of parameters of affinity partitioning as an analytical tool to predict the chromatographic behaviour of dye ligands are discussed.

Animals

[Purification of beta-lactamases by affinity chromatography].

Affinity columns able to purifie beta-lactamases have been prepared either by linking covalently reversible inhibitors or substrates to agarose beds. The enzyme is eluted with a gradient of sodium chloride or released with the substrate. This method is a pertinent one for the purification of these enzymes and for the study of bacteria harbouring more than one beta-lactamase.

Amidohydrolases

Affinity chromatography in the separation of human alpha 1-antitrypsin (alpha 1-AT) and antithrombin-III (AT-III).

The two antiproteases alpha 1-antitrypsin (alpha 1-AT) and antithrombin-III (AT-III) have been purified simultaneously from human plasma. Purification procedure consisted of gel filtration on Sephadex G-200 after initial processing of plasma, followed by ion exchange chromatography on DEAE-Sephadex A50 and DEAE-Cellulose, at a pH of 9.0 and pH 8.3 respectively. The two proteins could not be separated by any of these procedures including a lower pH (7.4) in ion exchange chromatography. Affinity chromatography on heparin-Sepharose separated the proteins since alpha 1-AT did not bind to the matrix. Alpha 1-AT unbound to the heparin-Sepharose was subsequently purified through con A-Sepharose affinity column. The final yield of both the proteins was about 20%. The molecular weight estimated on SDS electrophoresis for AT-III and alpha 1-AT was 63,000 and 50,000, respectively.

Antithrombin III

Purification of the glycoprotein allergen Ag7 from mugwort pollen by concanavalin A affinity chromatography.

Two affinity columns comprising immobilized concanavalin A (Con A), Con A-Sepharose and Con A-XP3507, were evaluated for their purifying ability for the glycoprotein allergen Ag7 from a partially purified extract of mugwort pollen. The most pronounced difference between the two columns was the nature of their nonspecific interactions; hydrophobic interactions were dominant with Con A-XP3507, whereas ionic interactions were dominant with Con A-Sepharose. Both Con A-columns were effective for purifying Ag7 with a recovery of 50% after specific elution with displacing sugars. The inclusion of 1.0 M NaCl and 20% ethylene glycol in the elution medium was useful for desorbing nonspecifically bound material, prior to specific elution of adsorbed Ag7 in the presence of the displacing sugars, alpha-methyl glucoside and alpha-methyl mannoside. The most efficient purification of Ag7 was achieved with Con A-Sepharose at room temperature rather than at 4 degrees C. Affinity chromatography with Con A-XP3507 resulted in a slightly more contaminated product (purity 54%) than with Con A-Sepharose (purity 64%).

Allergens

Analysis of ribonuclease-nucleotide interactions by quantitative affinity chromatography.

Quantitative affinity chromatography on uridine-5'-(Sepharose-4-aminophenylphosphoryl)-2'(3')-phosphate was developed for the study of binding of ribonuclease species to nucleotide ligands. Elution of the native species ribonuclease-A and -S on the afffinity matrix in 0.4 M ammonium acetate, pH 5.2, containing various amounts of the soluble competing ligand 2'-cytidine monophosphate, reveals an inverse response of elution volume to concentration of soluble ligand. This response conforms to behavior expected for the competing binding equilibria enzyme-soluble ligand and enzyme-insoluble ligand. A-NALYSIS OF ELUTION DATA ALLOWS CALCULATION OF KI and KIM, the dissociation constants, respectively, for the soluble and insoluble protein-ligand complexes. The values of these chromatographically derived constants are similar to values of dissocation constants determined in solution by kinetics of inhibition by 2'-cytidine monophosphate and uridine-5'-(j-aminophenylphosphoryl)-2'(3')-phosphate. Successful competitive elution experiments with [p-F-Phe8]semisynthetic ribonuclease-S' and individual elution trials for [4-F-His12]semisynthetic ribonuclease-S' indicate the utility of the quantitative affinity chromatographic technique for determination of ligand binding properties of ribonuclease derivatives, including inactive species. Nonbiospecific aspects of the interaction of ribonuclease with the affinity matrix in ammonium acetate buffers of concentrations 0.1 M and below were noted, delinating limits of conditions allowing the biospecificity needed for ligand-binding analyses by competitive elution. The dependence of ribonuclease competitive elution behavior on the amount of protein eluted also was examined and related to theoretical considerations in the quantitative application of affinity chromatography.

Binding Sites

The preparation of an enzyme associated with aflatoxin biosynthesis by affinity chromatography.

An affinity matrix for the purification of norsolorinic acid dehydrogenase, an enzyme involved in aflatoxin biosynthesis, was prepared by coupling norsolorinic acid to an agarose gel. This matrix was found to be ineffective in isolating active enzyme, and was therefore modified by methylation, using diazomethane. The methylated matrix produced a one-step purification of the enzyme from a crude homogenate, resulting in a 138-fold purification. The active isolate was found to contain one major and two minor bands upon nondenaturing electrophoresis, and all the norsolorinic acid dehydrogenase activity was associated with the major band. It was concluded that the matrix exhibited true affinity for the enzyme, and that affinity chromatography was a valuable approach to isolating other secondary metabolic enzymes involved in the biosynthesis of the aflatoxins.

Aflatoxins

Production of plasma selectively depleted in fibrinogen by affinity chromatography.

An affinity chromatography column was prepared using a polyclonal anti-fibrinogen antibody bound to Sephacryl S 1000. Normal human plasma was depleted of fibrinogen by passage through this column. The fibrinogen free plasma corrected the prolonged clotting times of plasmas deficient in factors V, VII, VIII and IX. Clottable fibrinogen was recovered from the column. An immunodepleted fibrinogen free plasma could fulfil a useful role in internal and external quality control alone, or in combination with other test materials; it could also be used in research.

Antibodies

Extraction and purification of specific antibody against Pseudomonas aeruginosa by immune affinity chromatography.

Immune affinity chromatography has been used to extract and purify specific immune antibody against P. aeruginosa immunotype 4 from hyperimmune gamma glubulin containing antibody against each of seven major immunotypes of P. aeruginosa. A column with a 4 ml. bed volume was construced which had a "working capacity" of approximately 1,680 agglutination units. With water used as the eluting agent, 100 percent yields of functionally active antibody were obtained when amounts equal to or less than the working capacity were loaded onto the column. The technique appears to be suitable for large scale extraction of specific immune antibody for therapeutic trials or investigative use.

Animals

Affinity chromatography of trypsin and related enzymes. V. Basic studies of quantitative affinity chromatography.

A detailed study of the quantitative affinity chromatography of trypsin [EC 3.4.21.4] is reported here. Frontal chromatography using an enzyme solution of very low concentration on an affinity adsorbent gave the dissociation constant of the enzyme-immobilized ligand complex (Kd). Kd values determined under various conditions enabled us to discuss in detail the interaction of trypsin and affinity adsorbents (mainly Gly-Gly-Arg Sepharose). The pH dependence of Kd was consistent with that of the interaction of trypsin and product-type compounds. The effects of changes in temperature, ionic strength, dielectric constant, etc., were also studied. The Ki values of soluble competitive inhibitors can be determined by analysis of their effects on the elution volume of the enzyme. The values obtained were in good agreement with those obtained by kinetic analysis. The present method proved to be useful as a general procedure to investigate the interaction of a protein and a specific ligand.

Arginine

Statistical theory of chromatography: new outlooks for affinity chromatography.

We have developed further the statistical approach to chromatography initiated by Giddings and Eyring, and applied it to affinity chromatography. By means of a convenient expression of moments the convergence towards the Laplace-Gauss distribution has been established. The Gaussian character is not preserved if other causes of dispersion are taken into account, but expressions of moments can be obtained in a generalized form. A simple procedure is deduced for expressing the fundamental constants of the model in terms of purely experimental quantities. Thus, affinity chromatography can be used to determine rate constants of association and dissociation in a range considered as the domain of the stopped-flow methods.

Analysis of Variance