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曼氏血吸虫二氢乳清酸脱氢酶的功能及抑制的结构基础。

Structural basis for the function and inhibition of dihydroorotate dehydrogenase from Schistosoma mansoni.

机构信息

Laboratório de Cristalografia de Proteínas, Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, Brazil.

Laboratório de Química Heterocíclica e Medicinal, Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, Brazil.

出版信息

FEBS J. 2021 Feb;288(3):930-944. doi: 10.1111/febs.15367. Epub 2020 Jun 7.

Abstract

Schistosomiasis is a serious public health problem, prevalent in tropical and subtropical areas, especially in poor communities without access to safe drinking water and adequate sanitation. Transmission has been reported in 78 countries, and its control depends on a single drug, praziquantel, which has been used over the past 30 years. Our work is focused on exploiting target-based drug discovery strategies to develop new therapeutics to treat schistosomiasis. In particular, we are interested in evaluating the enzyme dihydroorotate dehydrogenase (DHODH) as a drug target. DHODH is a flavoenzyme that catalyzes the stereospecific oxidation of (S)-dihydroorotate (DHO) to orotate during the fourth and only redox step of the de novo pyrimidine nucleotide biosynthetic pathway. Previously, we identified atovaquone, used in the treatment of malaria, and its analogues, as potent and selective inhibitors against Schistosoma mansoni DHODH (SmDHODH). In the present article, we report the first crystal structure of SmDHODH in complex with the atovaquone analogue inhibitor 2-((4-fluorophenyl)amino)-3-hydroxynaphthalene-1,4-dione (QLA). We discuss three major findings: (a) the open conformation of the active site loop and the unveiling of a novel transient druggable pocket for class 2 DHODHs; (b) the presence of a protuberant domain, only present in Schistosoma spp DHODHs, that was found to control and modulate the dynamics of the inhibitor binding site; (c) a detailed description of an unexpected binding mode for the atovaquone analogue to SmDHODH. Our findings contribute to the understanding of the catalytic mechanism performed by class 2 DHODHs and provide the molecular basis for structure-guided design of SmDHODH inhibitors. DATABASE: The structural data are available in Protein Data Bank (PDB) database under the accession code number 6UY4.

摘要

血吸虫病是一种严重的公共卫生问题,流行于热带和亚热带地区,特别是在缺乏安全饮用水和适当卫生设施的贫困社区。该疾病已在 78 个国家报告发生,其控制依赖于一种名为吡喹酮的单一药物,该药物已使用了 30 多年。我们的工作重点是利用基于靶点的药物发现策略,开发治疗血吸虫病的新疗法。特别是,我们有兴趣评估二氢乳清酸脱氢酶(DHODH)作为药物靶点。DHODH 是一种黄素酶,在从头嘧啶核苷酸生物合成途径的第四个也是唯一的氧化还原步骤中,催化(S)-二氢乳清酸(DHO)立体特异性氧化为乳清酸。此前,我们鉴定了抗疟药物阿托伐醌及其类似物,是曼氏血吸虫二氢乳清酸脱氢酶(SmDHODH)的有效和选择性抑制剂。在本文中,我们报告了 SmDHODH 与阿托伐醌类似物抑制剂 2-((4-氟苯基)氨基)-3-羟基萘-1,4-二酮(QLA)复合物的首个晶体结构。我们讨论了三个主要发现:(a)活性位点环的开放构象和为 2 类 DHODH 揭示的新颖瞬态可药靶口袋;(b)存在一个突出的结构域,仅存在于血吸虫属 DHODH 中,被发现控制和调节抑制剂结合位点的动力学;(c)阿托伐醌类似物与 SmDHODH 之间意外的结合模式的详细描述。我们的研究结果有助于理解 2 类 DHODH 执行的催化机制,并为 SmDHODH 抑制剂的结构指导设计提供了分子基础。数据库:结构数据可在蛋白质数据库(PDB)数据库中以登录号 6UY4 获得。

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