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二氢叶酸还原酶:锥虫和利什曼原虫中的一个潜在药物靶点。

Dihydrofolate reductase: a potential drug target in trypanosomes and leishmania.

作者信息

Zuccotto F, Martin A C, Laskowski R A, Thornton J M, Gilbert I H

机构信息

Welsh School of Pharmacy, University of Wales Cardiff, U.K.

出版信息

J Comput Aided Mol Des. 1998 May;12(3):241-57. doi: 10.1023/a:1016085005275.

Abstract

Dihydrofolate reductase has successfully been used as a drug target in the area of anti-cancer, anti-bacterial and anti-malarial chemotherapy. Little has been done to evaluate it as a drug target for treatment of the trypanosomiases and leishmaniasis. A crystal structure of Leishmania major dihydrofolate reductase has been published. In this paper, we describe the modelling of Trypanosoma cruzi and Trypanosoma brucei dihydrofolate reductases based on this crystal structure. These structures and models have been used in the comparison of protozoan, bacterial and human enzymes in order to highlight the different features that can be used in the design of selective anti-protozoan agents. Comparison has been made between residues present in the active site, the accessibility of these residues, charge distribution in the active site, and the shape and size of the active sites. Whilst there is a high degree of similarity between protozoan, human and bacterial dihydrofolate reductase active sites, there are differences that provide potential for selective drug design. In particular, we have identified a set of residues which may be important for selective drug design and identified a larger binding pocket in the protozoan than the human and bacterial enzymes.

摘要

二氢叶酸还原酶已成功用作抗癌、抗菌和抗疟疾化疗领域的药物靶点。但在将其评估为治疗锥虫病和利什曼病的药物靶点方面,所做的工作很少。利什曼原虫二氢叶酸还原酶的晶体结构已发表。在本文中,我们描述了基于该晶体结构对克氏锥虫和布氏锥虫二氢叶酸还原酶的建模。这些结构和模型已用于原生动物、细菌和人类酶的比较,以突出可用于设计选择性抗原生动物药物的不同特征。已对活性位点中存在的残基、这些残基的可及性、活性位点中的电荷分布以及活性位点的形状和大小进行了比较。虽然原生动物、人类和细菌二氢叶酸还原酶活性位点之间存在高度相似性,但也存在差异,这为选择性药物设计提供了潜力。特别是,我们已经确定了一组可能对选择性药物设计很重要的残基,并发现原生动物中的结合口袋比人类和细菌酶中的更大。

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