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半抗原与免疫球蛋白及其异源链重组体结合的常见机制。

A common mechanism of hapten binding to immunoglobulins and their heterologous chain recombinants.

作者信息

Zidovetzki R, Blatt Y, Glaudemans C P, Manjula B N, Pecht I

出版信息

Biochemistry. 1980 Jun 10;19(12):2790-5. doi: 10.1021/bi00553a039.

Abstract

Kinetics and thermodynamics of binding of the hapten beta-D-(1-6)-galactotriose to the homogeneous IgA T-601 and to heterologous recombinants of heavy and light chains prepared from mouse myeloma IgA's X-24, J-539, and T-601, which all have the same galactan specificity, have been studied by the chemical relaxation method. All the immunoglobulin-hapten systems investigated were found to exhibit two relaxation times. The reciprocal value of the fast time increased linearly, while that of the slow time leveled off with increasing hapten concentration. This behavior indicates the presence of a fast bimolecular association and a slower monomolecular step. The data obtained for homologous and hybrid immunoglobulins were all found to fit a mechanism where the proteins exist in two conformations and hapten binding shifts their equilibrium to the higher affinity conformer. Furthermore, the kinetic and thermodynamic parameters for the hapten binding by the hybrids were found to be similar to those of their parent proteins. These results strongly suggest that this conformational transition is an inherent property of the tertiary domain structure of the antibody, probably involving changes in the interactions between heavy- and light-chain domains.

摘要

已通过化学弛豫方法研究了半抗原β-D-(1-6)-半乳糖三糖与同源IgA T-601以及从小鼠骨髓瘤IgA X-24、J-539和T-601制备的重链和轻链的异源重组体的结合动力学和热力学,这些IgA都具有相同的半乳聚糖特异性。所研究的所有免疫球蛋白-半抗原系统均显示出两个弛豫时间。快速时间的倒数随半抗原浓度增加呈线性增加,而慢速时间的倒数则趋于平稳。这种行为表明存在快速双分子缔合和较慢的单分子步骤。发现同源和杂合免疫球蛋白获得的数据均符合一种机制,即蛋白质以两种构象存在,半抗原结合将其平衡转移至更高亲和力的构象体。此外,发现杂合体结合半抗原的动力学和热力学参数与其亲本蛋白质的相似。这些结果强烈表明,这种构象转变是抗体三级结构域的固有特性,可能涉及重链和轻链结构域之间相互作用的变化。

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