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分辨率为1.95埃的抗体外源性狄尔斯-阿尔德酶抑制剂复合物。

An antibody exo Diels-Alderase inhibitor complex at 1.95 angstrom resolution.

作者信息

Heine A, Stura E A, Yli-Kauhaluoma J T, Gao C, Deng Q, Beno B R, Houk K N, Janda K D, Wilson I A

机构信息

The Skaggs Institute of Chemical Biology, Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.

出版信息

Science. 1998 Mar 20;279(5358):1934-40. doi: 10.1126/science.279.5358.1934.

Abstract

A highly specific Diels-Alder protein catalyst was made by manipulating the antibody repertoire of the immune system. The catalytic antibody 13G5 catalyzes a disfavored exo Diels-Alder transformation in a reaction for which there is no natural enzyme counterpart and that yields a single regioisomer in high enantiomeric excess. The crystal structure of the antibody Fab in complex with a ferrocenyl inhibitor containing the essential haptenic core that elicited 13G5 was determined at 1.95 angstrom resolution. Three key antibody residues appear to be responsible for the observed catalysis and product control. Tyrosine-L36 acts as a Lewis acid activating the dienophile for nucleophilic attack, and asparagine-L91 and aspartic acid-H50 form hydrogen bonds to the carboxylate side chain that substitutes for the carbamate diene substrate. This hydrogen-bonding scheme leads to rate acceleration and also pronounced stereoselectivity. Docking experiments with the four possible ortho transition states of the reaction explain the specific exo effect and suggest that the (3R,4R)-exo stereoisomer is the preferred product.

摘要

通过操纵免疫系统的抗体库制备了一种高度特异性的狄尔斯-阿尔德蛋白催化剂。催化抗体13G5催化了一种不利的外型狄尔斯-阿尔德转化反应,该反应不存在天然酶对应物,且能以高对映体过量产生单一区域异构体。以1.95埃的分辨率测定了与含有引发13G5的必需半抗原核心的二茂铁基抑制剂复合的抗体Fab的晶体结构。三个关键的抗体残基似乎是观察到的催化作用和产物控制的原因。酪氨酸-L36作为路易斯酸激活亲双烯体以进行亲核攻击,天冬酰胺-L91和天冬氨酸-H50与取代氨基甲酸酯二烯底物的羧酸盐侧链形成氢键。这种氢键模式导致反应速率加快以及明显的立体选择性。对该反应的四种可能邻位过渡态进行对接实验解释了特定的外型效应,并表明(3R,4R)-外型立体异构体是优选产物。

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