Posner R G, Erickson J W, Holowka D, Baird B, Goldstein B
Department of Chemistry, Baker Laboratory, Cornell University, Ithaca, New York 14853.
Biochemistry. 1991 Mar 5;30(9):2348-56. doi: 10.1021/bi00223a008.
We study the dissociation of preformed bivalent ligand-bivalent receptor aggregates in solution, where the ligand is a symmetric bivalent hapten with two identical 2,4-dinitrophenyl (DNP) groups and the receptor is a fluorescein-labeled monoclonal anti-DNP IgE. We promote dissociation in two ways: by the addition of high concentrations of a monovalent hapten that competes for IgE binding sites with the bivalent hapten and by the addition of high concentrations of unlabeled IgE that binds almost all ligand binding sites that dissociate from labeled IgE. We investigate both theoretically and experimentally the two types of dissociation and find them to be quite different. Theory predicts that their kinetics will depend differently on the fundamental rate constants that characterize binding and aggregation. Using monovalent ligand to promote dissociation, we find that the fraction of labeled IgE sites bound to bivalent ligand decays with a slow and fast component. The fast decay corresponds to the dissociation of a singly bound DNP hapten. The interpretation of the slow decay depends on the detailed way in which ligand-receptor aggregates break up. We show that one possible explanation of these data is that small stable rings form before the addition of monovalent ligand. Other possible explanations are also presented.
我们研究了溶液中预先形成的二价配体 - 二价受体聚集体的解离,其中配体是具有两个相同的2,4 - 二硝基苯基(DNP)基团的对称二价半抗原,受体是荧光素标记的抗DNP单克隆IgE。我们通过两种方式促进解离:添加高浓度的单价半抗原,其与二价半抗原竞争IgE结合位点;添加高浓度的未标记IgE,其结合几乎所有从标记IgE解离的配体结合位点。我们从理论和实验两方面研究了这两种解离类型,发现它们有很大不同。理论预测,它们的动力学将以不同方式取决于表征结合和聚集的基本速率常数。使用单价配体促进解离时,我们发现与二价配体结合的标记IgE位点的分数以慢成分和快成分衰减。快衰减对应于单结合的DNP半抗原的解离。慢衰减的解释取决于配体 - 受体聚集体分解的详细方式。我们表明,这些数据的一种可能解释是在添加单价配体之前形成了小的稳定环。还提出了其他可能的解释。