Paul W E, Siskind G W, Benacerraf B
J Exp Med. 1966 Apr 1;123(4):689-705. doi: 10.1084/jem.123.4.689.
Equilibrium measurements of interactions of anti-DNP antibodies, prepared using DNP-PLL and several DNP-proteins for immunization, with DNP(0.6)-PLL(240) and with the univalent hapten, epsilon-DNP-L-lysine, were made utilizing the technique of fluorescence quenching. Carrier specificity of anti-DNP-PLL antibodies was demonstrated by a higher average intrinsic association constant (K(0)) of anti-DNP-PLL antibodies with DNP(0.6)-PLL(240) than with epsilon-DNP-L-lysine. The free energy contribution of the PLL carrier to the interaction of intact anti-DNP-PLL antibodies with DNP(0.6)-PLL(240) was from -0.8 to -2.1 kcal/mole. On the other hand, intact anti-DNP-protein antibodies displayed a lower energy of interaction with DNP(0.6)-PLL(240) than with epsilon-DNP-L-lysine of up to +2.4 kcal/mole. Fab' fragments of both anti-DNP-PLL and anti-DNP-BGG antibodies have K(0)'s with epsilon-DNP-L-lysine identical to the K(0)'s of the intact anti-DNP antibodies from which they were prepared. However, K(0) of interaction of Fab' fragments with DNP(0.6)-PLL(240) (a large proportion of the conjugated PLL molecules in this preparation bear more than one DNP group) is considerably lower than that of the intact antibody. Thus a cooperative effect in the binding of bivalent antibody and bivalent (or greater) antigen exists and is of the order of -1.2 to -2.0 kcal/mole of IgG antibody. Although the direct contribution of the carrier to the interaction of Fab' fragment of anti-DNP-PLL and DNP(0.6)-PLL(240) is -0.4 kcal/mole, the energy of carrier specificity, based upon consideration of cooperative effects and of repulsion of anti-DNP-protein antibodies for portions of the DNP-PLL determinants, is of the order of -3 kcal/mole (approximately 30% of total binding energy).
利用荧光猝灭技术,对使用二硝基苯 - 多聚赖氨酸(DNP - PLL)和几种二硝基苯 - 蛋白质免疫制备的抗二硝基苯(DNP)抗体与二硝基苯(0.6)- 多聚赖氨酸(240)(DNP(0.6)-PLL(240))以及单价半抗原ε - 二硝基苯 - L - 赖氨酸的相互作用进行了平衡测量。抗DNP - PLL抗体与DNP(0.6)-PLL(240)的平均固有缔合常数(K(0))高于与ε - 二硝基苯 - L - 赖氨酸的,这证明了抗DNP - PLL抗体的载体特异性。多聚赖氨酸载体对完整抗DNP - PLL抗体与DNP(0.6)-PLL(240)相互作用的自由能贡献为 -0.8至 -2.1千卡/摩尔。另一方面,完整的抗DNP - 蛋白质抗体与DNP(0.6)-PLL(240)相互作用的能量低于与ε - 二硝基苯 - L - 赖氨酸的,高达 +2.4千卡/摩尔。抗DNP - PLL和抗DNP - 牛血清白蛋白(BGG)抗体的Fab'片段与ε - 二硝基苯 - L - 赖氨酸的K(0)与制备它们的完整抗DNP抗体的K(0)相同。然而,Fab'片段与DNP(0.6)-PLL(240)(该制剂中大部分共轭多聚赖氨酸分子带有不止一个DNP基团)相互作用的K(0)远低于完整抗体的K(0)。因此,二价抗体与二价(或更高价)抗原结合中存在协同效应,其大小约为 -1.2至 -2.0千卡/摩尔IgG抗体。尽管载体对抗DNP - PLL的Fab'片段与DNP(0.6)-PLL(240)相互作用的直接贡献为 -0.4千卡/摩尔,但基于协同效应和抗DNP - 蛋白质抗体对DNP - PLL决定簇部分的排斥作用考虑,载体特异性能量约为 -3千卡/摩尔(约占总结合能的30%)。