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有机阳离子转运体 2(OCT2)抑制剂的组合药效团建模:对多种抑制机制的深入了解。

Combinatorial pharmacophore modeling of organic cation transporter 2 (OCT2) inhibitors: insights into multiple inhibitory mechanisms.

机构信息

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences , 555 Zuchongzhi Road, Shanghai 201203, China.

出版信息

Mol Pharm. 2013 Dec 2;10(12):4611-9. doi: 10.1021/mp400423g. Epub 2013 Nov 7.

Abstract

Organic cation transporter 2 (OCT2) is responsible for the entry step of many drugs in renal elimination, of which the changing activity may cause unwanted drug-drug interactions (DDIs). To develop drugs with favorable safety profile and provide instruction for rational clinical drug administration, it is of great interest to investigate the multiple mechanisms of OCT2 inhibition. In this study, we designed a combinatorial scheme to screen the optimum combination of pharmacophores from a pool of hypotheses established based on 162 OCT2 inhibitors. Among them, one single pharmacophore hypothesis represents a potential binding mode that may account for one unique inhibitory mechanism, and the obtained pharmacophore combination describes the multimechanisms of OCT2 inhibition. The final model consists of four individual pharmacophores, i.e., DHPR18, APR2, PRR5 and HHR4. Given a query ligand, it is considered as an inhibitor if it matches at least one of the hypotheses, or a noninhibitor if it fails to match any of four hypotheses. Our combinatorial pharmacophore model performs reasonably well to discriminate inhibitors and noninhibitors, yielding an overall accuracy around 0.70 for a test set containing 81 OCT2 inhibitors and 218 noninhibitors. Intriguingly, we found that the number of matched hypotheses was positively correlated with inhibition rate, which coincides with the pharmacophore modeling result of P-gp substrate binding. Further analysis suggested that the hypothesis PRR5 was responsible for competitive inhibition of OCT2, and other hypotheses were important for interaction between the inhibitor and OCT2. In light of the results, a hypothetical model for inhibiting transporting mediated by OCT2 was proposed.

摘要

有机阳离子转运体 2(OCT2)负责许多经肾脏消除药物的进入步骤,其活性的变化可能导致不必要的药物相互作用(DDI)。为了开发具有良好安全性的药物并为合理的临床药物管理提供指导,研究 OCT2 抑制的多种机制具有重要意义。在这项研究中,我们设计了一种组合方案,从基于 162 种 OCT2 抑制剂建立的假设池中筛选出最佳药效团组合。其中,一个单一药效团假设代表可能解释一种独特抑制机制的潜在结合模式,而获得的药效团组合描述了 OCT2 抑制的多种机制。最终模型由四个独立的药效团组成,即 DHPR18、APR2、PRR5 和 HHR4。对于查询配体,如果它与至少一个假设匹配,则认为它是抑制剂,如果它与四个假设中的任何一个都不匹配,则认为它是非抑制剂。我们的组合药效团模型在区分抑制剂和非抑制剂方面表现相当出色,对于包含 81 种 OCT2 抑制剂和 218 种非抑制剂的测试集,总体准确率约为 0.70。有趣的是,我们发现匹配的假设数量与抑制率呈正相关,这与 P-gp 底物结合的药效团建模结果一致。进一步的分析表明,假设 PRR5 负责 OCT2 的竞争性抑制,而其他假设对于抑制剂与 OCT2 之间的相互作用很重要。根据这些结果,提出了一个用于抑制 OCT2 介导的转运的假设模型。

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