Xavier K A, McDonald S M, McCammon J A, Willson R C
Department of Chemical Engineering, University of Houston, TX 77204-4792, USA.
Protein Eng. 1999 Jan;12(1):79-83. doi: 10.1093/protein/12.1.79.
The anti-hen egg lysozyme monoclonal antibody HyHEL-5 and its complexes with various species-variant and mutant lysozymes have been the subject of considerable experimental and theoretical investigation. The affinity of HyHEL-5 for bobwhite quail lysozyme (BWQL) is over 1000-fold lower than its affinity for the original antigen, hen egg lysozyme (HEL). This difference is believed to arise almost entirely from the replacement in BWQL of the structural and energetic epitope residue Arg68 by lysine. In this study, the association and dissociation kinetics of BWQL with HyHEL-5 were investigated under a variety of conditions and compared with previous results for HEL. HyHEL-5-BWQL association follows a bimolecular mechanism and the dissociation of the antibody-antigen complex is a first-order process. Changes in ionic strength (from 27 to 500 mM) and pH (from 6.0 to 10.0) produced about a 2-fold change in the association and dissociation rates. The effect of viscosity modifiers on the association reaction was also studied. The large difference in the HEL and BWQL affinities for HyHEL-5 is essentially due to differences in the dissociation rate constant.
抗鸡卵溶菌酶单克隆抗体HyHEL-5及其与各种物种变体和突变溶菌酶的复合物一直是大量实验和理论研究的对象。HyHEL-5对北美鹑溶菌酶(BWQL)的亲和力比对原始抗原鸡卵溶菌酶(HEL)的亲和力低1000倍以上。据信,这种差异几乎完全是由于BWQL中结构和能量表位残基Arg68被赖氨酸取代所致。在本研究中,研究了BWQL与HyHEL-5在各种条件下的结合和解离动力学,并与之前HEL的结果进行了比较。HyHEL-5与BWQL的结合遵循双分子机制,抗体-抗原复合物的解离是一级过程。离子强度(从27到500 mM)和pH值(从6.0到10.0)的变化使结合和解离速率产生了约2倍的变化。还研究了粘度调节剂对结合反应的影响。HEL和BWQL对HyHEL-5亲和力的巨大差异主要是由于解离速率常数的差异。