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猪胰弹性蛋白酶与7-取代-3-烷氧基-4-氯异香豆素的反应:利用与4-氯-3-乙氧基-7-胍基异香豆素形成的复合物晶体结构设计强效抑制剂

Reaction of porcine pancreatic elastase with 7-substituted 3-alkoxy-4-chloroisocoumarins: design of potent inhibitors using the crystal structure of the complex formed with 4-chloro-3-ethoxy-7-guanidinoisocoumarin.

作者信息

Powers J C, Oleksyszyn J, Narasimhan S L, Kam C M

机构信息

School of Chemistry, Georgia Institute of Technology, Atlanta 30332.

出版信息

Biochemistry. 1990 Mar 27;29(12):3108-18. doi: 10.1021/bi00464a030.

Abstract

The crystal structure of the acyl enzyme formed upon inhibition of porcine pancreatic elastase (PPE) by 4-chloro-3-ethoxy-7-guanidinoisocoumarin has been determined at a 1.85-A effective resolution. The chlorine atom is still present in this acyl enzyme, in contrast to the previously reported structure of the 7-amino-4-chloro-3-methoxyisocoumarin-PPE complex where the chlorine atom has been replaced by an acetoxy group. The guanidino group forms hydrogen bonds with the carbonyl group and side-chain hydroxyl group of Thr-41, and the acyl carbonyl group has been twisted out of the oxyanion hole. Molecular modeling indicates that the orientation of the initial Michaelis enzyme-inhibitor complex is quite different from that of the acyl enzyme since simple reconstruction of the isocoumarin ring would result in unfavorable interactions with Ser-195 and His-57. Molecular models were used to design a series of new 7-(alkylureido)- and 7-(alkylthioureido)-substituted derivatives of 3-alkoxy-7-amino-4-chloroisocoumarin as PPE inhibitors. All the 3-ethoxyisocoumarins were better inhibitors than those in the 3-methoxy series due to better interactions with the S1 pocket of PPE. The best ureido inhibitor also contained a tert-butylureido group at the 7-position of the isocoumarin. Due to a predicted interaction with a small hydrophobic pocket on the surface of PPE, this isocoumarin and a related phenylthioureido derivative are among the best irreversible inhibitors thus far reported for PPE (kobs/[I] = 8100 M-1 s-1 and 12,000 M-1 s-1). Kinetic studies of the stability of enzyme-inhibitor complexes suggest that many isocoumarins are alkylating the active site histidine at pH 7.5 via a quinone imine methide intermediate, while at pH 5.0, the predominant pathway appears to be simple formation of a stable acyl enzyme derivative.

摘要

已在1.85埃的有效分辨率下测定了4-氯-3-乙氧基-7-胍基异香豆素抑制猪胰弹性蛋白酶(PPE)后形成的酰基酶的晶体结构。与先前报道的7-氨基-4-氯-3-甲氧基异香豆素-PPE复合物结构不同,该酰基酶中氯原子仍然存在,在先前报道的结构中氯原子已被乙酰氧基取代。胍基与Thr-41的羰基和侧链羟基形成氢键,并且酰基羰基已扭曲出氧阴离子洞。分子模拟表明,初始米氏酶-抑制剂复合物的取向与酰基酶的取向有很大不同,因为异香豆素环的简单重建会导致与Ser-195和His-57产生不利的相互作用。分子模型被用于设计一系列新的3-烷氧基-7-氨基-4-氯异香豆素的7-(烷基脲基)-和7-(烷基硫脲基)-取代衍生物作为PPE抑制剂。由于与PPE的S1口袋有更好的相互作用,所有的3-乙氧基异香豆素都是比3-甲氧基系列更好的抑制剂。最佳的脲基抑制剂在异香豆素的7位还含有叔丁基脲基。由于预测与PPE表面的一个小疏水口袋相互作用,这种异香豆素和一种相关的苯硫脲基衍生物是迄今为止报道的PPE最佳不可逆抑制剂之一(kobs/[I] = 8100 M-1 s-1和12,000 M-1 s-1)。酶-抑制剂复合物稳定性的动力学研究表明,许多异香豆素在pH 7.5时通过醌亚胺甲基化物中间体使活性位点组氨酸烷基化,而在pH 5.0时,主要途径似乎是简单形成稳定的酰基酶衍生物。

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