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基于蛋白质结构设计对锥虫甘油醛-3-磷酸脱氢酶的选择性抑制:迈向治疗昏睡病的新药

Selective inhibition of trypanosomal glyceraldehyde-3-phosphate dehydrogenase by protein structure-based design: toward new drugs for the treatment of sleeping sickness.

作者信息

Verlinde C L, Callens M, Van Calenbergh S, Van Aerschot A, Herdewijn P, Hannaert V, Michels P A, Opperdoes F R, Hol W G

机构信息

Department of Biological Structure, SM-20, School of Medicine, University of Washington, Seattle 98195.

出版信息

J Med Chem. 1994 Oct 14;37(21):3605-13. doi: 10.1021/jm00047a017.

DOI:10.1021/jm00047a017
PMID:7932587
Abstract

Within the framework of a project aimed at rational design of drugs against diseases caused by trypanosomes and related hemoflagellate parasites, selective inhibitors of trypanosomal glycolysis were designed, synthesized, and tested. The design was based upon the crystallographically determined structures of the NAD:glyceraldehyde-3-phosphate dehydrogenase complexes of humans and Trypanosoma brucei, the causative agent of sleeping sickness. After one design cycle, using the adenosine part of the NAD cofactor as a lead, the following encouraging results were obtained: (1) a 2-methyl substitution, targeted at a small pocket near Val 36, improves inhibition of the parasite enzyme 12.5-fold; (2) an 8-(thien-2-yl) substitution, aimed at Leu 112 of the parasite enzyme, where the equivalent residue in the mammalian enzyme is Val 100, results in a 167-fold better inhibition of the trypanosomal enzyme, while the inhibition of the human enzyme is improved only 13-fold; (3) exploitation of a "selectivity cleft" created by a unique backbone conformation in the trypanosomal enzyme near the adenosine ribose yields a considerable improvement in selectivity: 2'-deoxy-2'-(3-methoxybenzamido)adenosine inhibits the human enzyme only marginally but enhances inhibition of the parasite enzyme 45-fold when compared with adenosine. The designed inhibitors are not only better inhibitors of T. brucei GAPDH but also of the enzyme from Leishmania mexicana.

摘要

在一个旨在合理设计抗锥虫及相关血鞭毛虫寄生虫所致疾病药物的项目框架内,设计、合成并测试了锥虫糖酵解的选择性抑制剂。该设计基于人及昏睡病病原体布氏锥虫的NAD:甘油醛-3-磷酸脱氢酶复合物的晶体结构。经过一个设计周期,以NAD辅因子的腺苷部分为先导,获得了以下令人鼓舞的结果:(1)针对Val 36附近的一个小口袋进行2-甲基取代,可使对寄生虫酶的抑制作用提高12.5倍;(2)针对寄生虫酶的Leu 112进行8-(噻吩-2-基)取代,哺乳动物酶中的等效残基为Val 100,结果对锥虫酶的抑制作用提高了167倍,而对人酶的抑制作用仅提高了13倍;(3)利用锥虫酶中腺苷核糖附近独特的主链构象形成的“选择性裂隙”,选择性有了显著提高:2'-脱氧-2'-(3-甲氧基苯甲酰胺基)腺苷对人酶的抑制作用很小,但与腺苷相比,对寄生虫酶的抑制作用提高了45倍。所设计的抑制剂不仅是布氏锥虫甘油醛-3-磷酸脱氢酶的更好抑制剂,也是墨西哥利什曼原虫该酶的更好抑制剂。

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