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3D Pharmacophore-Based Virtual Screening and Docking Approaches toward the Discovery of Novel HPPD Inhibitors

机译:基于3D药理学的虚拟筛选和对接方法,用于发现新型HPPD抑制剂

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p-Hydroxyphenylpyruvate dioxygenase (HPPD) is not only the useful molecular target in treating life-threatening tyrosinemia type I, but also an important target for chemical herbicides. A combined in silico structure-based pharmacophore and molecular docking-based virtual screening were performed to identify novel potential HPPD inhibitors. The complex-based pharmacophore model (CBP) with 0.721 of ROC used for screening compounds showed remarkable ability to retrieve known active ligands from among decoy molecules. The ChemDiv database was screened using CBP-Hypo2 as a 3D query, and the best-fit hits subjected to molecular docking with two methods of LibDock and CDOCKER in Accelrys Discovery Studio 2.5 (DS 2.5) to discern interactions with key residues at the active site of HPPD. Four compounds with top rankings in the HipHop model and well-known binding model were finally chosen as lead compounds with potential inhibitory effects on the active site of target. The results provided powerful insight into the development of novel HPPD inhibitors herbicides using computational techniques. View Full-Text
机译:对羟基苯丙酮酸双加氧酶(HPPD)不仅是治疗威胁生命的I型酪氨酸血症的有用分子靶标,还是化学除草剂的重要靶标。进行了基于计算机化学结构的药效团和基于分子对接的虚拟筛选相结合的鉴定新的潜在HPPD抑制剂。具有0.721 ROC的基于复合物的药效团模型(CBP)用于筛选化合物,显示出从诱饵分子中检索已知活性配体的出色能力。使用CBP-Hypo2作为3D查询筛选ChemDiv数据库,并在Accelrys Discovery Studio 2.5(DS 2.5)中使用LibDock和CDOCKER的两种方法对最适合的匹配分子进行分子对接,以识别与活性位点上关键残基的相互作用HPPD。最终选择了在HipHop模型和众所周知的结合模型中排名最高的四种化合物作为对靶标活性位点具有潜在抑制作用的先导化合物。结果为使用计算技术开发新型HPPD抑制剂除草剂提供了有力的见识。查看全文

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