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通过虚拟筛选预测刚地弓形虫毒力因子 ROP18 竞争抑制剂。

Prediction of Toxoplasma gondii virulence factor ROP18 competitive inhibitors by virtual screening.

机构信息

Shandong Academy of Medical Sciences, Shandong Institute of Parasitical Disease, Jining, 272033, China.

Key Laboratory of Parasite and Vector Biology, Ministry of Health, Shanghai, 200025, China.

出版信息

Parasit Vectors. 2019 Mar 13;12(1):98. doi: 10.1186/s13071-019-3341-y.

Abstract

BACKGROUND

Rhoptry protein 18 (ROP18) is a key virulence factor of Toxoplasma gondii. The host's immune responses mediated by immune-related GTPases (IRGs) could be blocked by ROP18's kinase activity. ROP18 also interacts with various substrates, such as activating transcription factor 6 beta (ATF6β) and affects multiple physiological functions within host cells, thereby inducing intense virulence. In this study, competitive inhibitors targeted to ROP18 were subjected to virtual screening based on the principle of structure-based drug design (SBDD).

METHODS

The preparation of the ROP18 structure was conducted using the "Structure Prepare" function of Molecular Operating Environment (MOE) software. The ATP-binding pocket was selected as the starting point for virtual screening. Construction of the pharmacophore model used Extended Hückel Theory (EHT) half-quantitative measurement and construction, as well as the characteristics of Type I kinase inhibitors. The pharmacophore model of ROP18 was imported into the Specs database for small molecule similarity screening using EHT pharmacophore measurement. Hit compounds were selected using the functions of London dG and generalized-born volume integral/weighted surface area (GBVI/WSA) scoring. The top 100 hits were analyzed by molecular docking and structure activity relationships (SAR) analysis.

RESULTS

The final pharmacophore comprised three typical characteristics: three hydrogen bond acceptors/donors, two ring aromatic features occupying the hydrophobic core, and one cation group feature targeted to the terminus of ATP. A total of 1314 hit compounds analogous to ROP18 pharmacophore were passed through the Specs. After two rounds of docking, 25 out of 100 hits were identified as belonging to two main scaffold types: phthalimide ring structure, thiazole ring and styrene structure. Additionally, the screen also identified 13 inhibitors with distinct scaffold types. The docking models and SAR analysis demonstrated that these hits could engage in multiple hydrogen bonds, salt bridges halogen bonds, and hydrophobic interactions with ROP18, and para-position halo substituents on the benzene ring may enhance their affinity scoring.

CONCLUSIONS

A pharmacophore against the ROP18 ATP-binding pocket was successfully constructed, and 25 representative inhibitors from 15 scaffold clusters were screened using the Specs database. Our results provide useful scaffold types for the chemical inhibition of ROP18 or alternative conformations to develop new anti-toxoplasmosis drug leads.

摘要

背景

速殖子蛋白 18(ROP18)是刚地弓形虫的关键毒力因子。ROP18 的激酶活性可以阻断宿主免疫相关 GTPases(IRGs)介导的免疫反应。ROP18 还与各种底物相互作用,如激活转录因子 6β(ATF6β),并影响宿主细胞内的多种生理功能,从而诱导强烈的毒力。在这项研究中,基于结构的药物设计(SBDD)原理,对靶向 ROP18 的竞争性抑制剂进行了虚拟筛选。

方法

使用 Molecular Operating Environment(MOE)软件的“Structure Prepare”功能制备 ROP18 结构。选择 ATP 结合口袋作为虚拟筛选的起点。基于 EHT 半定量测量和构建以及 I 型激酶抑制剂的特点,构建药效团模型。将 ROP18 的药效团模型导入 Specs 数据库,使用 EHT 药效团测量进行小分子相似性筛选。使用 London dG 和广义 Born 体积积分/加权表面积(GBVI/WSA)评分功能选择命中化合物。使用分子对接和结构活性关系(SAR)分析对前 100 个命中化合物进行分析。

结果

最终的药效团包含三个典型特征:三个氢键供体/受体、占据疏水核心的两个环状芳香特征和一个靶向 ATP 末端的阳离子基团特征。共有 1314 个与 ROP18 药效团类似的命中化合物通过 Specs。经过两轮对接,100 个命中化合物中有 25 个被鉴定为属于两种主要骨架类型:邻苯二甲酰亚胺环结构、噻唑环和苯乙烯结构。此外,该筛选还鉴定了 13 种具有不同骨架类型的抑制剂。对接模型和 SAR 分析表明,这些命中化合物可以与 ROP18 发生多个氢键、盐桥卤键和疏水相互作用,苯环上的对位卤代取代基可能增强它们的亲和力评分。

结论

成功构建了针对 ROP18 ATP 结合口袋的药效团,并使用 Specs 数据库筛选出 25 个来自 15 个骨架簇的代表性抑制剂。我们的结果为 ROP18 的化学抑制或替代构象提供了有用的骨架类型,以开发新的抗弓形虫药物先导物。

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