Kurup Sudheer S, Joshi Kaustubh A
Department of Chemistry, Institute of Chemical Technology, Nathalal Parekh Marg, Matunga, Mumbai 400019, India.
Department of Chemistry, Institute of Chemical Technology, Nathalal Parekh Marg, Matunga, Mumbai 400019, India.
J Mol Graph Model. 2016 Apr;65:113-28. doi: 10.1016/j.jmgm.2016.02.012. Epub 2016 Mar 2.
Nonnucleoside reverse transciptase inhibitors (NNRTI) are a class of drug molecules with a specific target of HIV-1 reverse transcriptase (RT). In the present work, we evaluated a set of selected oxazole and carboxamide derivatives to identify potential pharmacophoric features using molecular docking approach. The docking approach employed has been validated by enrichment factor calculation at top 1% (EF1%). It shows a considerable improvement in EF1%value compared to earlier reported study carried out on specific dataset of ligands and decoys for RT, in the directory of useful decoys (DUD). The carboxamide derivatives show better activity as NNRT inhibitors than oxazole derivatives. From this study, four pharmacophoric groups including a triazine ring, an aniline substituent, a benzyl amide moiety and a trimethylphenoxy substituent have been recognized and used for designing new NNRT inhibitors. Newly designed molecules show significant enhancement in docking scores over the native ligand, parent and other training set molecules. In addition, some functional groups have also been identified to assist in improving the activity of these pharmacophores. Thus a nitrile group, an amide and fluoro substitution turn out to be an important requisite for NNRT potential inhibitors.
非核苷类逆转录酶抑制剂(NNRTI)是一类以HIV-1逆转录酶(RT)为特定靶点的药物分子。在本研究中,我们使用分子对接方法评估了一组选定的恶唑和羧酰胺衍生物,以确定潜在的药效基团特征。所采用的对接方法已通过计算前1%富集因子(EF1%)进行了验证。与之前在有用诱饵数据库(DUD)中针对RT的特定配体和诱饵数据集进行的研究相比,它在EF1%值上有了显著提高。羧酰胺衍生物作为NNRT抑制剂的活性比恶唑衍生物更好。通过这项研究,已识别出包括三嗪环、苯胺取代基、苄基酰胺部分和三甲基苯氧基取代基在内的四个药效基团,并用于设计新的NNRT抑制剂。新设计的分子在对接分数上比天然配体、母体和其他训练集分子有显著提高。此外,还确定了一些官能团以帮助提高这些药效基团的活性。因此,腈基、酰胺和氟取代对于NNRT潜在抑制剂来说是重要的必要条件。