COVALENT ASSEMBLY OF MOUSE IMMUNOGLOBULIN-G SUBCLASSES INVITRO - APPLICATION OF A THEORETICAL-MODEL FOR INTERCHAIN DISULFIDE BOND FORMATION

被引:12
作者
PERCY, ME
BAUMAL, R
DORRINGTON, KJ
PERCY, JR
机构
[1] HOSP SICK CHILDREN, DEPT IMMUNOL, TORONTO M5G 1X8, ONTARIO, CANADA
[2] UNIV TORONTO, DEPT BIOCHEM, TORONTO M5S 1A8, ONTARIO, CANADA
[3] UNIV TORONTO, ERINDALE COLL, MISSISSAUGA L5L 1C6, ONTARIO, CANADA
来源
CANADIAN JOURNAL OF BIOCHEMISTRY | 1976年 / 54卷 / 08期
关键词
D O I
10.1139/o76-098
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The pathways and kinetics of interchain disulfide bond formation were determined in vitro for purified myeloma proteins representing the 3 major subclasses of mouse immunoglobulin G (IgG) using a reoxidation system previously described. Mixtures of oxidized and reduced glutathione were added to act as a disulfide interchange catalyst. The pathways of covalent assembly observed in vitro were qualitatively and quantitatively similar to those followed by the various subclasses in vivo. HH [H chain dimer] and HHL were the principle covalent intermediates seen with IgG1 (MOPC 31C) and IgG2a (MOPC 173 and clone 19). With IgG2b (MPC 11C), HL, HH and HHL were all prominant intermediates. The time courses of reoxidation were simulated using a theoretical model based on 2nd-order reaction kinetics. Two distinct phases were apparent in the reoxidation sequence. The 1st, which lasted for the initial 5-15 min, did not conform to the theoretical model. The 2nd phase could be accounted for by the model, and represented the remainder of the covalent assembly process. The physico-chemical basis for this biphasic phenomenon was explored. Sedimentation velocity studies showed that noncovalent association was incomplete at the beginning of the reoxidation step for all proteins except IgG2b (MOPC 11C). No dissociation was apparent in the reduced and alkylated proteins at pH 5 in the absence of prior exposure to acid conditions. Exposure to acid appears to affect the affinity between the subunits in the native proteins. Transfer of the proteins from pH 5 to pH 8.2 (the pH at which reoxidation proceeds) is accompanied by the generation of an absorption difference spectrum over an 8-10 min period. A pH-dependent conformational relaxation process may influence the early stages of reoxidation.
引用
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页码:675 / 687
页数:13
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