Haynes M R, Stura E A, Hilvert D, Wilson I A
Department of Molecular Biology, Scripps Research Institute, La Jolla, CA 92037.
Science. 1994 Feb 4;263(5147):646-52. doi: 10.1126/science.8303271.
The three-dimensional structure of a catalytic antibody (1F7) with chorismate mutase activity has been determined to 3.0 A resolution as a complex with a transition state analog. The structural data suggest that the antibody stabilizes the same conformationally restricted pericyclic transition state as occurs in the uncatalyzed reaction. Overall shape and charge complementarity between the combining site and the transition state analog dictate preferential binding of the correct substrate enantiomer in a conformation appropriate for reaction. Comparison with the structure of a chorismate mutase enzyme indicates an overall similarity between the catalytic mechanism employed by the two proteins. Differences in the number of specific interactions available for restricting the rotational degrees of freedom in the transition state, and the lack of multiple electrostatic interactions that might stabilize charge separation in this highly polarized metastable species, are likely to account for the observed 10(4) times lower activity of the antibody relative to that of the natural enzymes that catalyze this reaction. The structure of the 1F7 Fab'-hapten complex provides confirmation that the properties of an antibody catalyst faithfully reflect the design of the transition state analog.
已确定具有分支酸变位酶活性的催化抗体(1F7)与过渡态类似物形成的复合物的三维结构,分辨率达到3.0埃。结构数据表明,该抗体稳定了与未催化反应中出现的相同构象受限的周环过渡态。结合位点与过渡态类似物之间的整体形状和电荷互补性决定了正确底物对映体在适合反应的构象中的优先结合。与分支酸变位酶的结构比较表明,这两种蛋白质采用的催化机制总体相似。在限制过渡态旋转自由度方面可用的特定相互作用数量的差异,以及缺乏可能稳定这种高度极化亚稳物种中电荷分离的多重静电相互作用,可能是观察到的抗体活性相对于催化该反应的天然酶低10⁴倍的原因。1F7 Fab'-半抗原复合物的结构证实,抗体催化剂的特性忠实地反映了过渡态类似物的设计。