Tseng Wei-Lung, Chang Huan-Tsung, Hsu Su-Ming, Chen Ruey-Jien, Lin Shiming
Department of Chemistry, National Taiwan University/College of Medicine, 1-1 Jen-ai Road, Taipei, Taiwan, ROC.
Electrophoresis. 2002 Mar;23(6):836-46. doi: 10.1002/1522-2683(200203)23:6<836::AID-ELPS836>3.0.CO;2-J.
Affinity capillary electrophoresis (ACE) can provide both qualitative and quantitative information on molecular interactions and affords the advantages of very low sample consumption, high mass sensitivity, short analysis time, and the use of automated instrumentation. It has been applied clinically and biochemically to the determination of the binding constant and to the measurement of the binding stoichiometry for interactions between antibodies (Ab's) and antigens (Ag's) in free solution. In many situations, the Ag molecule has two or multiple binding sites, each of which has a similar or different intrinsic affinity for binding independently to the combining site(s) on an Ab molecule. The multivalent binding reactions between Ab and Ag molecules often occur. The objective of this review is to describe the uses of ACE in the determination of binding constants and stoichiometry of Ab-Ag interactions (immunoaffnity capillary electrophoresis), focusing especially on multivalent Ab-Ag interaction modes. Five model binding systems developed recently using ACE techniques are described with principles and examples: (i) divalent mAb-monovalent Ag interaction, (ii) divalent mAb-(homo)polyvalent Ag interaction, (iii) cooperativity of two binding sites of mAb-monovalent Ag interaction, (iv) monovalent Fab-divalent Ag interaction, and (v) polyclonal Ab-monovalent Ag interaction. Finally, the determination of binding stoichiometry of Ab-Ag interactions by ACE is described.
亲和毛细管电泳(ACE)能够提供有关分子相互作用的定性和定量信息,具有样品消耗极低、质量灵敏度高、分析时间短以及可使用自动化仪器等优点。它已在临床和生物化学领域用于测定结合常数以及测量游离溶液中抗体(Ab)与抗原(Ag)之间相互作用的结合化学计量。在许多情况下,Ag分子具有两个或多个结合位点,每个位点对独立结合到Ab分子上的结合位点具有相似或不同的内在亲和力。Ab与Ag分子之间的多价结合反应经常发生。本综述的目的是描述ACE在测定Ab-Ag相互作用的结合常数和化学计量(免疫亲和毛细管电泳)中的应用,尤其关注多价Ab-Ag相互作用模式。介绍了最近使用ACE技术开发的五个模型结合系统,包括原理和示例:(i)二价单克隆抗体-单价抗原相互作用,(ii)二价单克隆抗体-(同)多价抗原相互作用,(iii)单克隆抗体-单价抗原相互作用的两个结合位点的协同作用,(iv)单价Fab-二价抗原相互作用,以及(v)多克隆抗体-单价抗原相互作用。最后,描述了通过ACE测定Ab-Ag相互作用的结合化学计量。