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首页> 外文期刊>Journal of molecular graphics & modelling >Multicomplex-based pharmacophore modeling coupled with molecular dynamics simulations: An efficient strategy for the identification of novel inhibitors of PfDHODH
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Multicomplex-based pharmacophore modeling coupled with molecular dynamics simulations: An efficient strategy for the identification of novel inhibitors of PfDHODH

机译:基于多络合物的药物化学模型与分子动力学模拟相结合:一种有效的 pf dhodh的新抑制剂的有效策略

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Graphical abstract Display Omitted Abstract Enormous efforts have been made in the past to identify novel scaffolds against the potential therapeutic target, Plasmodium falciparum dihydroorotate dehydrogenase (PfDHODH). Fourteen different organic molecules have been crystallized to understand the structural basis of the inhibition. However, the pharmacophoric studies carried out so far, have not exploited all the structural information simultaneously to identify the novel inhibitors. Therefore, an attempt was made to construct the pharmacophore hypotheses from the available PfDHODH structural proteome. Among the generated hypotheses, a representative hypothesis was employed as a primary filter to list the molecules with complimentary features accountable for inhibition. Moreover, the auxiliary evaluations of the filtered molecules were accomplished via docking and drug-likeness studies. Subsequently, the stability of the protein-ligand complex was evaluated by using molecular dynamics simulations (MDs). The molecular details of binding interactions of the potential hits were compared with the highly active experimental structure (5FI8) to seek the more potent candidates that can be targeted against PfDHODH. Overall, the combination of screening and stability procedures resulted in the identification of three potent candidates. The drug-likeness of these molecules lie within the acceptable range and consequently increased the opportunities for their development to new anti-malarials. ]]>
机译:<![cdata [ 图形抽象 显示省略 Abstract 过去已经努力努力识别针对潜在治疗靶标的新型支架,疟原虫疟原虫二氢剂脱氢酶( pf dhodh)。 14种不同的有机分子已经结晶以了解抑制的结构基础。然而,到目前为止进行的药片学研究没有同时利用所有结构信息以鉴定新型抑制剂。因此,尝试从可用的 pf dhodh结构蛋白质组中构建药物角假设。在产生的假设中,使用代表性假设作为主要过滤器,以列出具有互斥抑制的互补特征的分子。此外,通过对接和药物肖像研究完成过滤分子的辅助评价。随后,通过使用分子动力学模拟(MDS)来评价蛋白质 - 配体络合物的稳定性。将潜在命中的结合相互作用的分子细节与高活性的实验结构(5fi8)进行比较,以寻求更有效的候选者,可以针对 pf dhodh。总体而言,筛选和稳定性程序的组合导致了识别三个有效的候选者。这些分子的药物象征在可接受的范围内,因此增加了它们对新的抗疟疾的发展的机会。 ]] >

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