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免疫球蛋白G的二聚体、三聚体和四聚体复合物可固定补体。

Dimeric, trimeric and tetrameric complexes of immunoglobulin G fix complement.

作者信息

Wright J K, Tschopp J, Jaton J C, Engel J

出版信息

Biochem J. 1980 Jun 1;187(3):775-80. doi: 10.1042/bj1870775.

Abstract

The binding of pure dimers, trimers and tetramers of randomly cross-linked non-immune rabbit immunoglobulin G to the first component and subcomponent of the complement system, C1 and C1q respectively, was studied. These oligomers possessed open linear structures. All three oligomers fixed complement with decreasing affinity in the order: tetramer, trimer, dimer. Complement fixation by dimeric immunoglobulin exhibited the strongest concentration-dependence. No clear distinction between a non-co-operative and a co-operative binding mechanism could be achieved, although the steepness of the complement-fixation curves for dimers and trimers was better reflected by the co-operative mechanism. Intrinsic binding constants were about 10(6)M-1 for dimers, 10(7)M-1 for trimers and 3 X 10(9)M-1 for tetramers, assuming non-co-operative binding. The data are consistent with a maximum valency of complement component C1 for immunoglobulin G protomers in the range 6-18. The binding of dimers to purified complement subcomponent C1q was demonstrated by sedimentation-velocity ultracentrifugation. Mild reduction of the complexes by dithioerythritol caused the immunoglobulin to revert to the monomeric state (S20,w = 6.2-6.5S) with concomitant loss of complement-fixing ability.

摘要

研究了随机交联的非免疫兔免疫球蛋白G的纯二聚体、三聚体和四聚体分别与补体系统的第一成分和亚成分C1和C1q的结合情况。这些寡聚体具有开放的线性结构。所有三种寡聚体固定补体的亲和力依次降低:四聚体、三聚体、二聚体。二聚体免疫球蛋白固定补体表现出最强的浓度依赖性。尽管二聚体和三聚体的补体固定曲线的陡峭程度用协同机制能更好地反映,但无法明确区分非协同和协同结合机制。假设为非协同结合,二聚体的内在结合常数约为10⁶M⁻¹,三聚体为10⁷M⁻¹,四聚体为3×10⁹M⁻¹。数据与补体成分C1对免疫球蛋白G原聚体的最大价数在6 - 18范围内一致。通过沉降速度超速离心法证明了二聚体与纯化的补体亚成分C1q的结合。用二硫赤藓糖醇对复合物进行轻度还原,导致免疫球蛋白恢复到单体状态(S₂₀,w = 6.2 - 6.5S),同时丧失补体固定能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af07/1162461/0a152c795912/biochemj00424-0234-a.jpg

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