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利用基于结构和配体的建模研究探索潜在GSK-3β抑制剂的结构和物理化学特征。

Exploring Structural and Physicochemical Profiles of Potential GSK-3β Inhibitors Using Structure- and Ligand-Based Modeling Studies.

作者信息

Hossain Tabassum, Saha Achintya, Mukherjee Arup

机构信息

Department of Chemical Technology, University of Calcutta, 92, A.P.C. Road, Kolkata-700009, India.

出版信息

Comb Chem High Throughput Screen. 2016;19(4):298-306. doi: 10.2174/1386207319666160411125646.

Abstract

Glycogen synthase kinase-3β (GSK-3β) is a promising target for therapeutic invasion of Alzheimer's disease (AD). The kinase enzyme plays major role in pathological process for the formation of β-amyloid plaques and neurofibrillary tangles in AD. In the present study, structure-based pharmacophore and ligand-based 3D QSAR, HQSAR and pharmacophore mapping studies have been emphasized to explore the possible structural requirement of this potential kinase inhibitors using a structurally diverse set of compounds. The developed models were validated with the interaction study at the catalytic cleft. The 3D QSAR studies yield robust models of CoMFA R(2) = 0.965, se = 0.212, Q(2) = 0.525, R(2)pred = 0.709, r(2)m = 0.579 and CoMSIA: R(2) = 0.935, se = 0.289, Q(2) = 0.581, R(2)pred = 0.723, r(2)m = 0.935, that explain the importance of steric, electrostatic, hydrogen bond (HB) acceptor of the molecule for inhibition of GSK-3β. The HQSAR study (R(2) = 0.871, se = 0.400, Q(2) = 0.639, R(2)pred = 0.721, r(2)m = 0.664) indicated the fragments of the molecular fingerprints that might be important for inhibition. Both structure- and ligand-based pharmacophore mapping proposed that acceptor and donor features of the molecule are essential for receptor-ligand interactions. Molecular diversity provides an opportunity on wide range of applicability for the GSK-3β inhibitors, and depicts information on the structural and properties requirement for effective binding at the active site selectivity that minimize the side effects with therapeutic benefits.

摘要

糖原合酶激酶-3β(GSK-3β)是治疗阿尔茨海默病(AD)的一个有前景的靶点。该激酶在AD中β-淀粉样斑块和神经原纤维缠结形成的病理过程中起主要作用。在本研究中,重点进行了基于结构的药效团和基于配体的3D QSAR、HQSAR及药效团映射研究,以利用一组结构多样的化合物探索这种潜在激酶抑制剂可能的结构要求。通过在催化裂隙处的相互作用研究对所开发的模型进行了验证。3D QSAR研究得出了稳健的CoMFA模型(R(2) = 0.965,se = 0.212,Q(2) = 0.525,R(2)pred = 0.709,r(2)m = 0.579)和CoMSIA模型(R(2) = 0.935,se = 0.289,Q(2) = 0.581,R(2)pred = 0.723,r(2)m = 0.935),这些模型解释了分子的空间、静电、氢键(HB)受体对抑制GSK-3β的重要性。HQSAR研究(R(2) = 0.871,se = 0.400,Q(2) = 0.639,R(2)pred = 0.721,r(2)m = 0.664)表明了分子指纹片段对抑制可能很重要。基于结构和基于配体的药效团映射均表明分子的受体和供体特征对于受体-配体相互作用至关重要。分子多样性为GSK-3β抑制剂提供了广泛的应用机会,并描绘了在活性位点选择性有效结合的结构和性质要求信息,从而将副作用降至最低并带来治疗益处。

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