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首页> 外文期刊>Journal of Medicinal Chemistry >Bisphosphonate inhibition of phosphoglycerate kinase: Quantitative structure-activity relationship and pharmacophore modeling investigation
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Bisphosphonate inhibition of phosphoglycerate kinase: Quantitative structure-activity relationship and pharmacophore modeling investigation

机译:双膦酸酯抑制磷酸甘油酸酯激酶的定量构效关系和药效团模型研究

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摘要

We report the results of a three-dimensional quantitative structure-activity relationship ( 3D-QSAR) and pharmacophore modeling investigation of the interaction of the enzyme 3-phosphoglycerate kinase ( PGK) with aryl and alkyl bisphosphonates. For the human enzyme, the IC50 values are predicted within a factor of 2 over the 240x experimental range in activity, while for the yeast enzyme, binding of the more flexible alkyl bisphosphonates is predicted within a factor of similar to 4 ( over a 2500x range in activity). Pharmacophore models indicate the importance of two negative ionizable features, one hydrophobic feature, and one halogen feature, and docking studies indicate that bisphosphonates bind in a manner similar to the 3-phosphoglycerate molecule identified crystallographically. The results give a good account of the activities of a diverse range of bisphosphonate inhibitors and are of interest in the context of developing inhibitors of glycolysis in organisms that are totally reliant on glycolysis for ATP production, such as trypanosomatid parasites.
机译:我们报告的三维定量结构-活性关系(3D-QSAR)和药效基团模型研究3-磷酸甘油酸酯激酶(PGK)与芳基和烷基双膦酸酯相互作用的结果。对于人类酶,预测的IC50值在240x实验活性范围内为2倍,而对于酵母酶,更灵活的烷基双膦酸烷基酯的结合预计在4倍内(在2500x范围内)活动中)。药理学模型表明了两个负电离特征,一个疏水特征和一个卤素特征的重要性,对接研究表明,双膦酸酯的结合方式与晶体学上鉴定的3-磷酸甘油酸酯分子类似。该结果很好地说明了各种双膦酸盐抑制剂的活性,并且在开发完全依赖于糖酵解来产生ATP的生物体中的糖酵解抑制剂(例如锥虫)寄生虫方面引起了人们的兴趣。

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