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Structural contributions of substrates to their binding to P-Glycoprotein. A TOPS-MODE approach.

机译:底物对其与P-糖蛋白结合的结构贡献。 TOPS-MODE方法。

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A topological substructural molecular design approach (TOPS-MODE) has been used to formulate structural rules for binding of substrates of P-glycoprotein (P-gp). We first review some of the models developed in the recent literature for predicting binding to P-gp. Then, we develop a model using TOPS-MODE, which is able to identify 88.4% of substrates and 84.2% of non-substrates. When the model is presented to an external prediction set of 100 substrates and 77 nonsubstrates it identifies correctly 81.8% of all cases. Using TOPS-MODE strategy we found structural contributions for binding to P-gp, which identifies 24 structural fragments responsible for such binding. We then carried out a chemico-biological analysis of some of the structural fragments found as contributing to P-gp binding of substrates. We show that in general the model developed so far can be used as a virtual screening method for identifying substrates of P-gp from large libraries of compounds.
机译:拓扑子结构分子设计方法(TOPS-MODE)已用于制定结合P-糖蛋白(P-gp)底物的结构规则。我们首先回顾一些最新文献中开发的预测与P-gp结合的模型。然后,我们使用TOPS-MODE开发模型,该模型能够识别88.4%的基材和84.2%的非基材。将模型提供给100个底物和77个非底物的外部预测集时,它可以正确识别所有情况的81.8%。使用TOPS-MODE策略,我们发现了与P-gp结合的结构性贡献,后者确定了负责这种结合的24个结构片段。然后,我们对发现有助于底物P-gp结合的某些结构片段进行了化学生物学分析。我们表明,一般而言,到目前为止开发的模型可以用作从大型化合物库中鉴定P-gp底物的虚拟筛选方法。

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