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基于分子对接的天然化合物作为潜在β-分泌酶1抑制剂的虚拟筛选:3D QSAR药效团映射和分子动力学分析。

Molecular docking based virtual screening of natural compounds as potential BACE1 inhibitors: 3D QSAR pharmacophore mapping and molecular dynamics analysis.

作者信息

Kumar Akhil, Roy Sudeep, Tripathi Shubhandra, Sharma Ashok

机构信息

a CSIR-Central Institute of Medicinal and Aromatic Plants , P.O. - CIMAP, Near Kukrail Picnic Spot, Lucknow 226 015 , India.

b Faculty of Electronics and Communication, Department of BioMedical Engineering , Brno University of Technology , Antonínská 548/1, 601 90 Brno , Czech Republic.

出版信息

J Biomol Struct Dyn. 2016;34(2):239-49. doi: 10.1080/07391102.2015.1022603. Epub 2015 Apr 9.

Abstract

Beta-site APP cleaving enzyme1 (BACE1) catalyzes the rate determining step in the generation of Aβ peptide and is widely considered as a potential therapeutic drug target for Alzheimer's disease (AD). Active site of BACE1 contains catalytic aspartic (Asp) dyad and flap. Asp dyad cleaves the substrate amyloid precursor protein with the help of flap. Currently, there are no marketed drugs available against BACE1 and existing inhibitors are mostly pseudopeptide or synthetic derivatives. There is a need to search for a potent inhibitor with natural scaffold interacting with flap and Asp dyad. This study screens the natural database InterBioScreen, followed by three-dimensional (3D) QSAR pharmacophore modeling, mapping, in silico ADME/T predictions to find the potential BACE1 inhibitors. Further, molecular dynamics of selected inhibitors were performed to observe the dynamic structure of protein after ligand binding. All conformations and the residues of binding region were stable but the flap adopted a closed conformation after binding with the ligand. Bond oligosaccharide interacted with the flap as well as catalytic dyad via hydrogen bond throughout the simulation. This led to stabilize the flap in closed conformation and restricted the entry of substrate. Carbohydrates have been earlier used in the treatment of AD because of their low toxicity, high efficiency, good biocompatibility, and easy permeability through the blood-brain barrier. Our finding will be helpful in identify the potential leads to design novel BACE1 inhibitors for AD therapy.

摘要

β-位点淀粉样前体蛋白裂解酶1(BACE1)催化Aβ肽生成过程中的限速步骤,被广泛认为是阿尔茨海默病(AD)潜在的治疗药物靶点。BACE1的活性位点包含催化天冬氨酸(Asp)双联体和侧翼结构。Asp双联体在侧翼结构的帮助下切割底物淀粉样前体蛋白。目前,尚无针对BACE1的上市药物,现有的抑制剂大多为假肽或合成衍生物。需要寻找一种具有天然骨架的强效抑制剂,使其与侧翼结构和Asp双联体相互作用。本研究筛选了天然数据库InterBioScreen,随后进行三维(3D)定量构效关系药效团建模、映射、计算机辅助药物代谢动力学/药物毒性预测,以寻找潜在的BACE1抑制剂。此外,对选定的抑制剂进行了分子动力学研究,以观察配体结合后蛋白质的动态结构。所有构象和结合区域的残基都是稳定的,但侧翼结构在与配体结合后呈闭合构象。在整个模拟过程中,键合寡糖通过氢键与侧翼结构以及催化双联体相互作用。这导致侧翼结构稳定在闭合构象,限制了底物的进入。由于碳水化合物具有低毒性、高效率、良好的生物相容性以及易于透过血脑屏障,此前已被用于AD的治疗。我们的研究结果将有助于确定潜在的先导化合物,以设计用于AD治疗的新型BACE1抑制剂。

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