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Synthetic haptens as probes of antibody response and immunorecognition.

机译:合成半抗原作为抗体反应和免疫识别的探针。

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The molecular forces that bind antibody to antigen have long fascinated chemists. The use of synthetic haptens to study immunochemical phenomena can be traced back to the classic work of Karl Lansteiner. His utilization of small-molecule-protein conjugates first demonstrated the shape-selective nature of antibody binding. Later work by Linus Pauling and David Pressman employed multivalent, synthetic ligands to establish the bivalent nature of antibodies and explain the nature of immunoprecipitation. Fluorescent probes such as dansyl, fluorescein, and Ru(bpy)(2+)(3) have been used to study affinity maturation, quantify antibody affinities, and investigate polyclonal antibody heterogeneity. Finally, X-ray crystallography has yielded a molecular picture of how antibodies exercise intermolecular forces (e.g., charge-charge interactions, H-bonding, and Van der Waals) to bind haptens. Studies inspired by Landsteiner's original work continue to play an important role in fields ranging from immunodiagnostics to catalytic antibodies. Copyright 2000 Academic Press.
机译:使抗体与抗原结合的分子力使化学家们着迷了很久。使用合成半抗原研究免疫化学现象可以追溯到Karl Lansteiner的经典著作。他对小分子蛋白质结合物的利用首先证明了抗体结合的形状选择性质。莱纳斯·鲍林(Linus Pauling)和戴维·普斯曼(David Pressman)的后续工作采用了多价合成配体来建立抗体的二价性质并解释免疫沉淀的性质。荧光探针(如丹磺酰基,荧光素和Ru(bpy)(2 +)(3))已用于研究亲和力成熟,定量抗体亲和力和研究多克隆抗体异质性。最后,X射线晶体学已得出抗体如何行使分子间力(例如,电荷-电荷相互作用,H键和Van der Waals)结合半抗原的分子图像。受Landsteiner原始工作启发的研究继续在从免疫诊断到催化抗体的各个领域发挥重要作用。版权所有2000学术出版社。

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