首页> 外文期刊>Journal of Molecular Structure >Parallel screening of drug-like natural compounds using Caco-2 cell permeability QSAR model with applicability domain, lipophilic ligand efficiency index and shape property: A case study of HIV-1 reverse transcriptase inhibitors
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Parallel screening of drug-like natural compounds using Caco-2 cell permeability QSAR model with applicability domain, lipophilic ligand efficiency index and shape property: A case study of HIV-1 reverse transcriptase inhibitors

机译:使用CaCo-2细胞渗透性QSAR模型的不同筛选药物样天然化合物,具有适用性结构域,亲脂性配体效率指数和形状特性:HIV-1逆转录酶抑制剂的案例研究

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The traditional drug design strategy centrally focuses on optimizing binding affinity with the receptor target and evaluates pharmacokinetic properties at a later stage which causes high rate of attrition in clinical trials. Alternatively, parallel screening allows evaluation of these properties and affinity simultaneously. In a case study to identify leads from natural compounds with experimental HIV-1 reverse transcriptase (RT) inhibition, we integrated various computational approaches including Caco-2 cell permeability QSAR model with applicability domain (AD) to recognize drug -like natural compounds, molecular docking to study HIV-1 RT interactions and shape similarity analysis with known crystal inhibitors having characteristic butterfly-like model. Further, the lipophilic properties of the compounds refined from the process with best scores were examined using lipophilic ligand efficiency (LLE) index. Seven natural compound hits viz. baicalien, (+)-calanolide A, mniopetal F, fagaronine chloride, 3,5,8-trihydroxy-4-quinolone methyl ether derivative, nitidine chloride and palmatine, were prioritized based on LLE score which demonstrated Caco-2 well absorption labeling, encompassment in AD structural coverage, better receptor affinity, shape adaptation and permissible AlogP value. We showed that this integrative approach is successful in lead exploration of natural compounds targeted against HIV-1 RT enzyme. (C) 2017 Elsevier B.V. All rights reserved.
机译:传统的药物设计策略集中侧重于优化与受体靶标的结合亲和力,并在后期阶段评估药代动力学性质,这导致临床试验中的高磨损率。或者,并行筛选允许同时评估这些性质和亲和力。在案例研究中,鉴定具有实验HIV-1逆转录酶(RT)抑制的天然化合物的导线,我们将包括Caco-2细胞渗透性QSAR模型的各种计算方法与适用性域(AD)进行综合,以识别药物的天然化合物,分子对接研究HIV-1 RT相互作用及其具有特征蝴蝶样模型的已知晶体抑制剂的形状相似性分析。此外,使用亲脂性配体效率(LLE)指数,检查从具有最佳分数的过程中改进的化合物的亲脂性能。七种天然复合击中viz。 BaciCienien,(+) - Calanolide A,Mniopetal F,Fagaroning氯化物,3,5,8-三羟基-4-喹啉甲基醚衍生物,硝基氯和棕榈啶,基于LLE分数,展示了Caco-2井吸收标记,包括广告结构覆盖,更好的受体亲和力,形状适配和允许的Alogp值。我们表明,这种综合方法是成功的,在针对HIV-1 RT酶靶向的天然化合物的铅探索中是成功的。 (c)2017年Elsevier B.V.保留所有权利。

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