Huser H, Haimovich J, Jaton J C
Eur J Immunol. 1975 Mar;5(3):206-10. doi: 10.1002/eji.1830050311.
Recombinations and hybridizations of H and L-chains derived from several homogeneous rabbit antibodies to type 3 pneumococcal polysaccharide (SIII) were carried out. All reconstitution experiments performed gave rise to genuine IgG molecules. Antigen-binding studies and affinity measurements for a hexasaccharide ligand derived from SIII were made. In addition, heterologous antiidiotypic serum raised against one rabbit anti-SIII antibody was used to measure the reconstitution of idiotypic determinants in hybrid immunoglobulin molecules. The results show that full recovery of the antigen-binding properties was obtained only when chains derived from the same antibody molecules were reassociated. Similarly, the complete regain of idiotypic determinants (studied in one antibody system) could only be demonstrated in the homologous recombinants. The pairing of an H-chain with several heterologous L-chains, which differed in 6-11 positions in the 3 hypervariable sections, led to the formation of hybrid IgG molecules which had an affinity at least 100-fold lower than that of the parent anti-body molecule and a number of hapten-binding sites which did not exceed 0.30.
对源自几种针对3型肺炎球菌多糖(SIII)的同源兔抗体的重链和轻链进行了重组和杂交。所有进行的重组实验均产生了真正的IgG分子。对源自SIII的六糖配体进行了抗原结合研究和亲和力测量。此外,用针对一种兔抗SIII抗体产生的异源抗独特型血清来测量杂交免疫球蛋白分子中独特型决定簇的重组情况。结果表明,只有当源自相同抗体分子的链重新结合时,抗原结合特性才能完全恢复。同样,(在一个抗体系统中研究的)独特型决定簇的完全恢复仅在同源重组体中得到证实。一条重链与几条在3个高变区的6 - 11位不同的异源轻链配对,导致形成杂交IgG分子,其亲和力比亲本抗体分子至少低100倍,且半抗原结合位点数量不超过0.30。