Screening of Prospective Plant Compounds as H1R and CL1R Inhibitors and Its Antiallergic Efficacy through Molecular Docking Approach

Hasan Zulfiqar, M. Masoud, Hui Yang, Shu-Guang Han, Cheng-Yan Wu, Hao Lin
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引用次数: 10

Abstract

Allergens have the ability to enter the body and cause illness. Leukotriene is the widespread allergen which could stimulate mast cells to discharge histamine which causes allergy symptoms. An effective strategy for treating leukotriene-induced allergy is to find the inhibitors of leukotriene or histamine activity from phytochemicals. For this purpose, a library of 8,500 phytochemicals was generated using MOE software. The structures of histamine-1 receptor and cysteinyl leukotriene receptor-1 were predicted by the homology modeling method through the SWISS model. The phytochemicals were docked with predicted structures of histamine-1 and cysteinyl leukotriene receptor-1 in MOE software to determine the binding affinity of the phytochemicals against the targets. Moreover, chemoinformatics properties and ADMET of phytochemicals were assessed to find the drug likeness behavior of compounds. Compound ID 10054216 has the lowest S -score value for H-1 receptor that is -18.9186 kcal/mol which is lower than the value of standard -15.167 kcal/mol. The other compounds 393471, 71448939, 10722577, and 442614 also showed good S -score values than the standard. Moreover, compound ID 11843082 has the lowest S -score value for CL1R that is -15.481 kcal/mol which is lower than the value of standard -12.453 kcal/mol. The other compounds 72284, 5282102, 66559251, and 102506430 also showed good S -score values than the standard. In this research article, we performed molecular docking to find the best inhibitors against H1R and CL1R and their antiallergic efficacy. This in silico knowledge will be helpful in near future for the design of novel, safe, and less costing H-1 receptor and CL1R inhibitors with the aim to improve human life quality.
基于分子对接方法的植物H1R和CL1R抑制剂筛选及其抗过敏效果研究
过敏原有能力进入人体并引起疾病。白三烯是一种广泛存在的过敏原,它可以刺激肥大细胞释放组胺,从而引起过敏症状。从植物化学物质中寻找白三烯或组胺活性抑制剂是治疗白三烯致过敏的有效策略。为此,使用MOE软件生成了一个包含8,500种植物化学物质的库。通过SWISS模型,采用同源建模方法预测组胺-1受体和半胱氨酸-白三烯受体-1的结构。在MOE软件中,将植物化学物质与预测的组胺-1和半胱氨酸白三烯受体-1结构对接,以确定植物化学物质与靶标的结合亲和力。此外,还对植物化学物质的化学信息学性质和ADMET进行了评估,以发现化合物的药物相似行为。化合物ID 10054216对H-1受体的S评分最低,为-18.9186 kcal/mol,低于标准值-15.167 kcal/mol。其他化合物393471、71448939、10722577和442614也表现出较好的S得分值。化合物ID 11843082对CL1R的S值最低,为-15.481 kcal/mol,低于标准值-12.453 kcal/mol。其他化合物72284、5282102、66559251和102506430也表现出较好的S得分值。在本研究中,我们通过分子对接来寻找抗H1R和CL1R的最佳抑制剂及其抗过敏效果。这种计算机知识将有助于在不久的将来设计出新颖、安全、成本更低的H-1受体和CL1R抑制剂,以改善人类的生活质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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