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Biomedical subjects

T Azuma

Publications and source records attributed to T Azuma.

At least 433 records · Page 24Linked to original sources

Formation of interchain disulfide bonds in Bence Jones proteins and immunoglobulins.

The formation of the interchain disulfide bonds in partially reduced Bence Jones proteins and immunoglobulins was studied in the presence of glutathione. It was found that only oxidized glutathione (GSSG) was effective for the formation of the interchain disulfide bonds in type gamma Bence Jones proteins and IgG. In type kappa Bence Jones proteins, on the other hand, no formation of the inter L-L disulfide bond was observed in the presence of GSSG at above pH 6. The kinetic pattern of disulfide bond formation of Bence Jones proteins was well interpreted by assuming that two monomers of a type gamma protein dimer are discriminated (monomers 1 and 2) and that only an intermediate in which the SH group on monomer 1 is blocked with GSSG can form a disulfide-bonded dimer and the intermediate in which the SH group on monomer 2 is blocked with GSSG can not. Comparison of the kinetic data for the formation of the interchain disulfide bonds of IgG with those for Bence Jones proteins suggested that H chain-GSSG mixed disulfide is a principal intermediate for the formation of the inter H-L disulfide bond.

Bence Jones Protein↗

The mechanism of reassembly of immunoglobulin G.

The noncovalent interaction of light (L) chain with heavy (H) chain or Fd isolated from a human myeloma protein Jo (IgG1, kappa) was studied by following circular dichroic (CD) change at 235 nm. The dimerization constants of Jo-L chain determined by measuring the CD change at 293 nm with protein concentration showed that the Jo-L chain exists as the monomeric form under the experimental conditions used for recombination with H chain. The second-order rate constants for the interaction between H and L chains were in good agreement with those for the interaction between Fd and L chain at various pH values. The binding behavior of L chain to Fd could be described by a single association constant. In the interpretation of the binding of L chain to H chain, however, it was necessary to assume that the binding of L chain to one of the two sites on H chain dimer (H2) decreases the affinity of the other site for L chain. The binding constant of the first L chain to H2 was the same as that of L chain to Fd. Renaturation processes of L chain, Fd, Fab(SS) fragment (with intact interchain disulfide bond), and Fab(RA) fragment (in which the interchain disulfide bond had been reduced and alkylated) from the denatured states in 0.5 or 1 M acetic acid on neutralization were studied. The renaturation of Fd occurred very rapidly, while that of L chain consisted of a very rapid process and a slow process which followed first-order kinetics. The renaturation process of Fab(SS) consisted of rapid and slow phases, of which the latter followed first-order kinetics. The renaturation process of Fab(RA) also consisted of rapid and slow phases, but the latter process followed second-order kinetics. The overall rate constant of renaturation of Fab(RA) was the same as that of the reformation of Fab(RA) from isolated Fd and L chain. On the basis of these facts, the kinetic mechanism by which Fd and L chain recombine to yield Fab(RA) can be described in terms of the scheme Fd + L in equilibrium Fd ... L leads to Fab(RA), where Fd ... L is an intermediate, and CD change is only observed in the second unimolecular process and not in the first bimolecular process.

Circular Dichroism↗

Detection of IgG rheumatoid factor by concanavalin A treatment and complement fixation with IgG rheumatoid factor.

Concanavalin A (Con A) froms precipitates with carbohydrate-rich protein such as IgM, IgD, IgE, and IgA. Since IgG contains little carbohydrate and does not react with Con A, the activity of IgG-rheumatoid factor (RF) can be measured in the supernate of the Con A-treated serum. When the latex fixation test (LFT) and the sensitized sheep cell agglutination test (SSCA) were perfromed in the supernate for the detection of IgG-RF, LFT was positive in 32-1% of sera, out of 137 sera originally positive for LFT, and SSCA was positive in 18-5% of sera, out of 119 sera originally positive for SSCA. IgG-RF exhibited lower complement fixing ability than IgM-RF and correlated with agglutination titres of IgG-RF, while the CH50 of the original serum did not correlate with haemolytic activities of either IgM-RF or IgG-RF.

Arthritis, Rheumatoid↗

Microvibration: capable of inducing spontaneous contractions in smooth muscles.

Spontaneous contractions were elicited by the vibration of small amplitude (microvibration) imposed upon the quiescent strips prepared from the ureter and portal vein of dogs. An acceleration of the existing rhythm in the spontaneously contracting strips was also brought about by microvibration. Frequencies and amplitudes of microvibration ranged from 1 to 90 Hz and from 50 to 150 mum, respectively. Imposed cyclic strains were less than 1% at their maximum. Up to the amplitude of 150 mum, the greater the amplitude, the faster the induced rhythm. Stepwise increase of the frequencies up to 30 Hz brought about a gradual acceleration of rhythmicity. At frequencies of above 30 Hz, no appreciable frequency-dependent differences were observable among the responses induced. Local adrenergic mechanism proved to have nothing to do with these effects.

Animals↗

Kinetics of recombination of heavy and light chains of a human IgG1 myeloma protein.

The recombination of alkylated H and L chains of a human myeloma protein (Jo) was studied by means of circular dichroism (CD). Marked CD changes were observed at 295 and 235 nm when H and L chains recombined. The change in the CD maximum at 235 nm was followed with time after mixing preparations of H and L chains in the pH range between 4 and 6. The recombination reaction was slow and followed second order kinetics. The observed rate constants were markedly dependent on pH. The pH dependence of the rate constant was analyzed assuming that there are two forms of H chain which are in a pH-dependent equilibrium with each other.

Alkylation↗

A type kappa Bence Jones protein containing a cysteinyl residue in the variable region.

The proteins precipitated with ammonium sulfate from the urine of a patient (Mat) with multiple myeloma were separated into three components by ion-exchange and gel chromatographies. Sodium dodecyl sulfate polyacrylamide gel electrophoresis, amino acid analyses, immunochemical tests, and measurement of circular dichroism showed that these components were a dimer with a disulfide bond, a stable monomer, and a variable fragment, respectively. All three protein components reacted with 5,5'-dithiobis-(2-nitrobenzoic acid) in Tris-HCl buffer at pH 8.0, indicating that they contained free sulhydryl groups. Partial reduction with dithiothreitol in the absence of denaturants yielded two SH groups per molecule from both the monomer and the dimer, and one SH group per molecule from the fragment. This indicates that the monomer of Mat protein contains a cysteinyl residue in the variable region in addition to a cysteinyl residue at the COOH terminus. The reactivities of the two SH groups of the partially reduced monomer toward iodoacetamide and iodoacetic acid were studied by polyacrylamide gel electrophoresis. The two SH groups had similar reactivities with iodacetamide, but the SH group at the COOH terminus was more reactive with iodoacetic acid than that in the variable region. The extrinsic Cotton effects of an azobenzene-2-sulfenyl group introduced into the SH group in the variable region were different from those of dye attached to the COOH terminal SH group, indicating that the two SH groups had different environments. The states of the SH groups of the intact monomer are discussed on the basis of these findings.

Alkylation↗

Effects of potassium chloride and temperature on the kinetics of recombination of heavy and light chains of a human IgGl myeloma protein.

The effects of KCl and temperature on the kinetics of the recombination reaction of alkylated H and L chains of a human myeloma protein were studied by means of circular dichroism (CD). The recombination rate was considerably reduced by the presence of KCl. The results of the difference spectra showed that tryptophyl residue(s) in L chains are perturbed by KCl. No changes in the CD and absorption spectra with KCl concentration were observed for H chains and recombined H2L2. The change in the rate constant with KCl concentration paralleled the changes in the CD at 235 nm and the difference in molar extinction coefficient at 293 nm. These facts suggest that the reduction of the recombination rate in the presence of KCl is due to a change in the conformation of L chains as a result of specific interaction with chloride ions or by a shift to the dimer form in the monomer-dimer equilibrium of L chains. The rate constant showed a temperature dependence with an activation energy of 17.4 kcal/mole.

Binding Sites↗

Kinetics and equilibrium studies on autologous and heterologous recombinations of heavy and light chains of myeloma proteins.

1. The kinetics of the heterologous recombination reaction of alkylated H chains of a myeloma protein (Jo) with alkylated L chains of another myeloma protein (Ita) were studied by following changes with time in the circular dichroism at 235 nm and the results were compared with those for the autologous recombination of Jo-H chains with Jo-H chains reported previously (T. Azuma et al.(1975) J. Biochem. 77, 473-479 and the preceding paper). The heterologous reaction also followed second-order kinetics. The second-order rate constant (kapp) for heterologous recombination was about seven times smaller than that for autologous recombination at pH 5.5, while they were similar between pH 4.2 and 4.7. 2. The apparent association constants (Kapp) for the reaction, H2+L2=H2L2, were determined by measuring the ellipticities at 235 nm of mixtures of H and L chains in various ratios. The values of Kapp for the autologous and heterologous recombinations were both pH-dependent and changed from 10(6) M-1 at pH 3.9 to 108 M-1 at pH 4.3. Using these values of kapp and Kapp, the half-time for the dissociation of autologous H2L2 to H2 and L2 at pH 4.3 was estimated to be 80 hr.

Binding Sites↗