Romesberg F E, Spiller B, Schultz P G, Stevens R C
Howard Hughes Medical Institute and the Department of Chemistry, University of California, Berkeley, CA 94720, USA. 94720, USA.
Science. 1998 Mar 20;279(5358):1929-33. doi: 10.1126/science.279.5358.1929.
The three-dimensional structure of an antibody (39-A11) that catalyzes a Diels-Alder reaction has been determined. The structure suggests that the antibody catalyzes this pericyclic reaction through a combination of packing and hydrogen-bonding interactions that control the relative geometries of the bound substrates and electronic distribution in the dienophile. A single somatic mutation, serine-91 of the light chain to valine, is largely responsible for the increase in affinity and catalytic activity of the affinity-matured antibody. Structural and functional studies of the germ-line precursor suggest that 39-A11 and related antibodies derive from a family of germ-line genes that have been selected throughout evolution for the ability of the encoded proteins to form a polyspecific combining site. Germ line-encoded antibodies of this type, which can rapidly evolve into high-affinity receptors for a broad range of structures, may help to expand the binding potential associated with the structural diversity of the primary antibody repertoire.
一种催化狄尔斯-阿尔德反应的抗体(39-A11)的三维结构已被确定。该结构表明,抗体通过堆积和氢键相互作用的组合来催化这种周环反应,这些相互作用控制着结合底物的相对几何形状以及亲双烯体中的电子分布。一个体细胞突变,即轻链的丝氨酸91突变为缬氨酸,在很大程度上导致了亲和力成熟抗体的亲和力和催化活性的增加。对种系前体的结构和功能研究表明,39-A11及相关抗体源自一个种系基因家族,这些基因在整个进化过程中因其编码蛋白形成多特异性结合位点的能力而被选择。这种由种系编码的抗体能够迅速进化为针对广泛结构的高亲和力受体,可能有助于扩大与初级抗体库结构多样性相关的结合潜力。