首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Identification of molecular descriptors for design of novel Isoalloxazine derivatives as potential Acetylcholinesterase inhibitors against Alzheimer's disease
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Identification of molecular descriptors for design of novel Isoalloxazine derivatives as potential Acetylcholinesterase inhibitors against Alzheimer's disease

机译:新型异唑嗪衍生物设计的分子描述夹鉴定乙酰胆碱酯酶抑制剂对阿尔茨海默病的潜在乙酰胆碱酯酶抑制剂

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In Alzheimer's disease (AD), the level of Acetylcholine (ACh) neurotransmitter is reduced. Since Acetylcholinesterase (AChE) cleaves ACh, inhibitors of AChE are very much sought after for AD treatment. The side effects of current inhibitors necessitate development of newer AChE inhibitors. Isoalloxazine derivatives have proved to be promising (AChE) inhibitors. However, their structure-activity relationship studies have not been reported till date. In the present work, various quantitative structure-activity relationship (QSAR) building methods such as multiple linear regression (MLR), partial least squares ,and principal component regression were employed to derive 3D-QSAR models using steric and electrostatic field descriptors. Statistically significant model was obtained using MLR coupled with stepwise selection method having r(2)=.9405, cross validated r(2) (q(2))=.6683, and a high predictability (pred_r(2)=.6206 and standard error, pred_r(2)se=.2491). Steric and electrostatic contribution plot revealed three electrostatic fields E_496, E_386 and E_577 and one steric field S_60 contributing towards biological activity. A ligand-based 3D-pharmacophore model was generated consisting of eight pharmacophore features. Isoalloxazine derivatives were docked against human AChE, which revealed critical residues implicated in hydrogen bonds as well as hydrophobic interactions. The binding modes of docked complexes (AChE_IA1 and AChE_IA14) were validated by molecular dynamics simulation which showed their stable trajectories in terms of root mean square deviation and molecular mechanics/Poisson-Boltzmann surface area binding free energy analysis revealed key residues contributing significantly to overall binding energy. The present study may be useful in the design of more potent Isoalloxazine derivatives as AChE inhibitors.
机译:在阿尔茨海默病(AD)中,乙酰胆碱(ACH)神经递质的水平降低。由于乙酰胆碱酯酶(ACHE)切割ACH,因此疼痛的抑制剂非常追求AD治疗后。目前抑制剂的副作用需要开发新的疼痛抑制剂。已经证明了异嗪衍生物是有前途的(疼痛)抑制剂。然而,迄今尚未报告其结构活动关系研究。在本作的工作中,采用多个线性回归(MLR),偏最小二乘和主成分回归等各种定量结构 - 活动关系(QSAR)构建方法来使用Steric和静电场描述符来导出3D QSAR模型。使用具有R(2)=的逐步选择方法的MLR获得统计学显着的模型。9405,交叉验证的R(2)(Q(2))=。6683和高可预测性(PEAT_R(2)=。6206和6206标准误差,pred_r(2)se = .2491)。空间和静电贡献曲线概念揭示了三个静电场E_496,E_386和E_577和一个有助于生物活性的一个空间场S_60。产生了一种基于配体的3D药物光学模型,由八种药物团组成。异唑嗪衍生物对接抗对抗人疼痛,揭示了含有氢键和疏水相互作用的关键残留物。通过分子动力学模拟验证停靠复合物(ACHE_IA1和ACHE_IA14)的结合模式,其分子动力学模拟验证其在均线平均方形偏差和分子机械/泊松 - 博尔兹曼表面区域结合自由能量分析的稳定轨迹揭示了与总体约束力有显着贡献的关键残留物活力。本研究可用于设计更有效的异唑嗪衍生物作为疼痛抑制剂。

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