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从(非定向的)内部化学文库中鉴定具有杀利什曼原虫活性的婴儿利什曼原虫硫醇合成酶抑制剂。

Identification of L. infantum trypanothione synthetase inhibitors with leishmanicidal activity from a (non-biased) in-house chemical library.

机构信息

Universidad de Alcalá, Departamento de Biología de Sistemas, 28805, Alcalá de Henares, Madrid, Spain.

Universidad de Alcalá, Departamento de Biología de Sistemas, 28805, Alcalá de Henares, Madrid, Spain.

出版信息

Eur J Med Chem. 2022 Dec 5;243:114675. doi: 10.1016/j.ejmech.2022.114675. Epub 2022 Aug 18.

Abstract

Redox homeostasis in trypanosomatids is based on the low-molecular-weight trypanothione, an essential dithiol molecule that is synthetized by trypanothione synthetase (TryS) and maintained in its reduced state by trypanothione disulfide reductase (TryR). The fact that both enzymes are indispensable for parasite survival and absent in the mammalian hosts makes them ideal drug targets against leishmaniasis. Although many efforts have been directed to developing TryR inhibitors, much less attention has been focused on TryS. The screening of an in-house library of 144 diverse molecules using two parallel biochemical assays allowed us to detect 13 inhibitors of L. infantum TryS. Compounds 1 and 3 were characterized as competitive inhibitors with K values in the low micromolar range and plausible binding modes for them were identified by automated ligand docking against refined protein structures obtained through computational simulation of an entire catalytic cycle. The proposed binding site for both inhibitors overlaps the polyamine site in the enzyme and, additionally, 1 also occupies part of the ATP site. Compound 4 behaves as a mixed hyperbolic inhibitor with a K of 0.8 μM. The activity of 5 is clearly dependent on the concentration of the polyamine substrate, but its kinetic behavior is clearly not compatible with a competitive mode of inhibition. Analysis of the activity of the six best inhibitors against intracellular amastigotes identified 5 as the most potent leishmanicidal candidate, with an EC value of 0.6 μM and a selectivity index of 35.

摘要

利什曼原虫的氧化还原稳态基于低分子量的三肽硫醇,这是一种必需的二硫醇分子,由三肽硫醇合酶(TryS)合成,并由三肽硫醇还原酶(TryR)保持还原状态。这两种酶对寄生虫的生存都是不可或缺的,而在哺乳动物宿主中却不存在,这使得它们成为治疗利什曼病的理想药物靶点。尽管人们已经做出了许多努力来开发 TryR 抑制剂,但对 TryS 的关注却很少。使用两种平行的生化测定方法对 144 种不同分子的内部文库进行筛选,使我们能够检测到 13 种利什曼原虫 TryS 的抑制剂。化合物 1 和 3 被鉴定为具有低微摩尔范围内 K 值的竞争性抑制剂,并且通过针对通过整个催化循环的计算模拟获得的经过细化的蛋白质结构的自动配体对接,确定了它们的合理结合模式。这两种抑制剂的结合部位都与酶中的多胺部位重叠,此外,化合物 1 还占据了部分 ATP 部位。化合物 4 表现为混合双曲线抑制剂,K 值为 0.8 μM。5 的活性显然取决于多胺底物的浓度,但它的动力学行为显然与竞争性抑制模式不兼容。对六种最佳抑制剂对细胞内无鞭毛体的活性分析表明,5 是最有效的杀利什曼原虫候选物,EC 值为 0.6 μM,选择性指数为 35。

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