Holm L, Laaksonen L, Kaartinen M, Teeri T T, Knowles J K
Biotechnical Laboratory, VTT, Espoo, Finland.
Protein Eng. 1990 Apr;3(5):403-9. doi: 10.1093/protein/3.5.403.
Structural models of the variable domains of the murine anti-2-phenyloxazolone IgG (Ox1 idiotype) and its somatic variant, which has higher affinity to the hapten 2-phenyloxazolone, were constructed by computer-aided model building using known structures of highly homologous immunoglobulins as templates. Molecular dynamics simulations were used to dock the hapten between the VL and VH domains. The hapten is predicted to bind to slightly different sites in the two models. Hypotheses concerning the role of a number of preferred mutations in anti-oxazolone variants are presented. These can be tested by mutagenesis and crystallography. In particular, the higher binding affinities of the different antibody variants are shown to correlate with better complementarity of electrostatics. The molecular dynamic simulations also suggest that two mobile tryptophans at the mouth of the pocket may play an important role in the binding of hapten.
以高度同源免疫球蛋白的已知结构为模板,通过计算机辅助模型构建,构建了小鼠抗2-苯基恶唑酮IgG(Ox1独特型)及其对半抗原2-苯基恶唑酮具有更高亲和力的体细胞变体可变区的结构模型。利用分子动力学模拟将半抗原对接在VL和VH结构域之间。预计半抗原在两个模型中的结合位点略有不同。提出了关于抗恶唑酮变体中一些优先突变作用的假设。这些可以通过诱变和晶体学进行测试。特别地,不同抗体变体的更高结合亲和力与更好的静电互补性相关。分子动力学模拟还表明,口袋口处的两个可移动色氨酸可能在半抗原的结合中起重要作用。