Chmura A J, Orton M S, Meares C F
Department of Chemistry, University of California, One Shields Avenue, Davis, CA 95616, USA.
Proc Natl Acad Sci U S A. 2001 Jul 17;98(15):8480-4. doi: 10.1073/pnas.151260298. Epub 2001 Jul 10.
Here we report an approach to the design and production of antibody/ligand pairs, to achieve functional affinity far greater than avidin/biotin. Using fundamental chemical principles, we have developed antibody/ligand pairs that retain the binding specificity of the antibody, but do not dissociate. Choosing a structurally characterized antibody/ligand pair as an example, we engineered complementary reactive groups in the antibody binding pocket and the ligand, so that they would be in close proximity in the antibody/ligand complex. Cross-reactions with other molecules in the medium are averted because of the low reactivity of these groups; however, in the antibody/ligand complex the effective local concentrations of the complementary reactive groups are very large, allowing a covalent reaction to link the two together. By eliminating the dissociation of the ligand from the antibody, we have made the affinity functionally infinite. This chemical manipulation of affinity is applicable to other biological binding pairs.
在此,我们报告一种设计和生产抗体/配体对的方法,以实现远高于抗生物素蛋白/生物素的功能亲和力。利用基本化学原理,我们开发出了抗体/配体对,其保留了抗体的结合特异性,但不会解离。以一对结构已明确的抗体/配体为例,我们在抗体结合口袋和配体中设计了互补的反应基团,使它们在抗体/配体复合物中彼此靠近。由于这些基团的低反应性,避免了与介质中其他分子的交叉反应;然而,在抗体/配体复合物中,互补反应基团的有效局部浓度非常高,使得共价反应能够将两者连接在一起。通过消除配体与抗体的解离,我们使亲和力在功能上达到了无限。这种对亲和力的化学操控适用于其他生物结合对。