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A computational approach to validate novel drug targets of gentianine from Swertiya chirayita in Plasmodium falciparum

机译:从疟原虫中验证肾炎中肾炎的新药靶标的计算方法

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摘要

Gentianine is one of the compounds found in the plant Swertiya chirayita that is known for its antimalarial activity. However, its exact molecular mechanism of action is yet to be understood. In our present study, we applied several computational approaches to filter out and determine possible targets of gentianine in Plasmodium falciparum 3D7. Protein-protein networks formed the basis of one of our strategies along with orthologous protein analysis to establish essentiality. Out of 6 essential proteins from unique pathways, haloacid dehalogenase like-hydrolase (PfHAD1), phosphoenolpyruvate carboxykinase (PfPEPCK) and fumarate hydratase (PfFH) were screened as drug targets through this approach. Through our other strategy we established the predicted IC50 (PIC50) value of gentianine with a set of molecular descriptors from 123 Pathogen Box anti-malarial compounds. Afterwards through 2D structural similarity, L-lactate dehydrogenase (PfLDH) was established as another possible target. In our work, we performed in silica docking and analysed the binding of gentianine to the proteins. All of the proteins were reported with favourable binding results and were considered for complex molecular dynamics simulation approach. Our research clears up the molecular mechanism of antimalarial activity of gentianine to some extent paving way for experimental validation of the same in future.
机译:龙莲属是在植物Swertiya Chirayita中发现的化合物之一,该化合物被抗疟疾活动所知。然而,其确切的分子机制尚未理解。在我们现在的研究中,我们应用了几种计算方法来过滤掉疟原虫在疟原虫3D7中的肾炎的可能目标。蛋白质 - 蛋白质网络形成了我们的策略之一以及直局的蛋白质分析,以确定基本性。通过来自独特途径的6个必需蛋白,通过这种方法将Haloacid Dehalogalase(PfHad1),磷酸丙酮酸碳酸丁基酶(Pfpepck)和富马酸水解酶(PFPEPCK)和富马酸氢酶(PFH)作为药物靶标。通过我们的其他策略,我们建立了来自123个病原体盒抗疟原虫化合物的一组分子描述符的戈尼丁的预测IC50(PIC50)值。之后通过2D结构相似性,确定L-乳酸脱氢酶(PFLDH)作为另一种可能的靶标。在我们的工作中,我们在硅胶对接进行并分析了龙莲花蝶的结合蛋白质。据报道,所有蛋白质都以有利的结合结果报告,被认为是复杂的分子动力学模拟方法。我们的研究清除了杜尼宁的抗疟疾活动的分子机制,在某种程度上铺平了未来的实验验证的方式。

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