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S Yagisawa

Publications and source records attributed to S Yagisawa.

11 recordsLinked to original sources

Studies on enzymic condensation of long chain peptides.

Our recent researches toward enzymic condensation of long chain peptides are discussed. These involve two methods of peptide C-terminal activation and transpeptidation catalyzed by clostripain, trypsin and their derivatives.

Amino Acid Sequence

High-efficiency transpeptidation catalysed by clostripain and electrostatic effects in substrate specificity.

Clostripain catalyses the transpeptidation between benzoylarginin ethyl ester and amino acid amides, oligopeptides, insulin A- and B-chains and tryptic peptides of myoglobin at millimolar substrate concentrations. The reactions proceed with temporary accumulation of the products, followed by hydrolytic decomposition. The yield was not affected significantly by the type of N-terminal amino acid, but was diminished markedly by the negative charges of the amine components. The yields for natural peptides were linearly related to the charge density of the peptides.

Acyltransferases

Two types of rate-determining step in chemical and biochemical processes.

Close examination of the concept of the rate-determining step (RDS) shows that there are two types of RDS depending on the definition of 'rate'. One is represented by the highest peak of the free-energy diagram of consecutive reactions and holds true where the rate is defined in terms of the concentration of the first reactant. The other is represented by the peak showing the maximum free-energy difference, where the free-energy difference is the height of a peak measured from the bottom of any preceding troughs, where the definition of the rate is in terms of the total reactant concentration including intermediates. There are no criteria a priori for selecting one of them.

Biochemical Phenomena

Sandwich enzyme immunoassay of tumor-associated antigen sialosylated Lewisx using beta-D-galactosidase coupled to a monoclonal antibody of IgM isotype.

Enzyme conjugates with antibody of IgG type have been used extensively in immunohistochemistry, but conjugates with antibody of IgM type have not been reported. This paper describes the beta-D-galactosidase (Gal) labeling of a monoclonal IgM antibody designated CSLEX1 (for cytotoxic sialosylated Lewisx), which is directed against a tumor-associated antigen sialosylated Lewisx (S-Lex). The antibody was first acylated with a heterobifunctional agent N-(gamma-maleimidobutyryloxy)succinimide (GMBS) to introduce the maleimide groups into the molecule; excess reagent was removed by gel filtration and then the activated antibodies were crosslinked to the thiol groups of Gal. The conjugates were partially purified of free Gal by DEAE-Toyopearl column chromatography with an increasing linear concentration of NaCl. The conjugates thus prepared retained almost full enzyme activity and were demonstrated to be free of CSLEX1 by affinity chromatography using anti-galactosidase antibody bound to Sepharose 4B. The conjugates were used as a label in a sandwich enzyme immunoassay (SEIA) to detect the antigen at concentrations as low as 0.2 U/well. The SEIA was used to measure serum S-Lex levels in both healthy subjects and lung cancer patients and mean concentrations of 70 U/ml and 198.6 U/ml were detected respectively.

Animals

Determination of an antibody-antigen binding constant by enzyme immunoassay and a theory for analysis of competitive binding of two ligands to heterogeneous receptor.

A method for determining antigen-antibody binding constants by using enzyme-labeled antigens has been developed. In the measurement, enzyme-labeled and unlabeled antigens (Ag* and Ag) were allowed to compete in binding to the antibody (Ab) under conditions where Ag* much less than Ab much less than Ag. The data were analyzed according to a new theory developed for the analysis of competitive binding of two ligands to a heterogeneous receptor. The theory indicates that the binding degree of a labeled ligand measured at various concentrations of the receptor can be used to prepare a standard curve relating the binding degree of the labeled ligand and the average of the concentrations of the free receptor components which are in binding equilibrium with another unlabeled ligand. For homogeneous receptors, the method gives usual binding constants for the unlabeled ligand, but for heterogeneous receptors, it gives a new type of average binding constant for the unlabeled ligand in which the contribution of each receptor component is amplified in proportion to its affinity against the labeled ligand. This average binding constant was named the "affinity-average binding constant." A rabbit anti-blasticidin S (BLS) antiserum analyzed by the present method using beta-galactosidase-labeled BLS as the labeled ligand was found to be fairly homogeneous with respect to the affinity and to have a binding constant of 1.48 +/- 0.24 (S.D.) X 10(8) M-1 for unlabeled BLS.

Animals

Mercuri-nitrophenol as a reporter group for the conformational change of hemoglobin.

One mole of horse hemoglobin tetramer reacts with 2 moles of 2-chloromercuri-4-nitrophenol (MNP) at beta 93 cysteine. The difference spectra between NMP-bound hemoglobin and hemoglobin, measured with the aid of ascorbic acid and ascorate oxidase [EC 1.10.3.3] as deoxygenation reagents, indicate that the pK of the phenolic hydroxyl group of MNP increases by 0.6 to 0.8 pH unit on deoxygenation of the hemoglobin. The Hill constant of the modified hemoglobin changes with pH. It decreases from about 2.4 at pH 6.8 to about 1.0 at pH 9.0 This effect of the reagent is interpreted as inherent to the reporter groups.

Animals

A method for observing protein-protein interaction.

A method is proposed for observation of the interaction between charged macromolecules such as proteins. The method is based on the fact that the pK of an ionizable reporter group attached to a macromolecule can be altered by the electrostatic effect of another charged macromolecule which associates with the former. The effectiveness of the method was shown in the study of the association of bovine serum albumin with hen egg lysozyme [EC 3.2.1.17]. The errors inherent in this method in obtaining the equilibrium constant of the association reaction and procedures for their correction are discussed.

Animals