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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Fragment and knowledge-based design of selective GSK-3beta inhibitors using virtual screening models.
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Fragment and knowledge-based design of selective GSK-3beta inhibitors using virtual screening models.

机译:使用虚拟筛选模型基于片段和知识的选择性GSK-3beta抑制剂设计。

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Glycogen Synthase Kinase 3beta is one of the important targets in the treatment of type II diabetes and Alzheimer's disease. Currently this target is in pursuit for type II diabetes and a few GSK-3beta inhibitors have been now advanced to Phases I and II of clinical trials. The best validated HypoGen model consists of four pharmacophore features; 1) two hydrogen bond acceptors, 2) one hydrogen bond donor and 3) one hydrophobic. This pharmacophore model correlates well with the docking model, one hydrogen bond acceptor is necessary for the H-bond interaction with VAL135, and second hydrogen bond acceptor is important for the H-bond interactions with ARG141 and the hydrophobic feature may be required for the weak H-bond interactions with ASP133. The comparative model was developed from analogue and structure-based models like Catalyst, Glide SP & XP, Gold Fitness & ChemScore and Ligand Fit using multiple linear regression analysis. A virtual library of 10,000 molecules was generated employing fragment and knowledge-based approach and the comparative model was used to predict the activities of these molecules. The H-bond with ARG141 appears to be unique to GSK-3beta and explains the high GSK-3beta selectivity observed for 1H-Quinazolin-4-ones and Benzo[e][1,3]oxazin-4-ones. This understanding of protein-ligand interactions and molecular recognition increases the rapid development of potent and selective inhibitors, and also helps to eliminate the increase in number of false positives and negatives.
机译:糖原合酶激酶3beta是治疗II型糖尿病和阿尔茨海默氏病的重要靶标之一。目前,该目标是针对II型糖尿病的追求,一些GSK-3beta抑制剂现已进入临床试验的I和II期。经过最佳验证的HypoGen模型包含四个药效基团功能。 1)两个氢键受体,2)一个氢键供体,和3)一个疏水性。该药效团模型与对接模型相关性很好,一个氢键受体对于与VAL135的氢键相互作用是必需的,第二个氢键受体对于与ARG141的氢键相互作用很重要,弱分子可能需要疏水特征与ASP133的氢键相互作用。比较模型是使用多重线性回归分析从类似模型和基于结构的模型(例如Catalyst,Glide SP&XP,Gold Fitness&ChemScore和Ligand Fit)开发的。使用片段和基于知识的方法生成了10,000个分子的虚拟文库,并使用比较模型预测了这些分子的活性。与ARG141形成的H键似乎是GSK-3beta所特有的,并解释了1H-喹唑啉-4-酮和苯并[e] [1,3]恶嗪-4-酮对GSK-3beta的高选择性。对蛋白质-配体相互作用和分子识别的这种理解促进了有效和选择性抑制剂的快速发展,并且还有助于消除假阳性和假阴性数量的增加。

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