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细胞色素P450 2B6底物的分子特征

Molecular characterization of CYP2B6 substrates.

作者信息

Ekins Sean, Iyer Manisha, Krasowski Matthew D, Kharasch Evan D

机构信息

Collaborations in Chemistry, 601 Runnymede Ave, Jenkintown, PA 19046. USA.

出版信息

Curr Drug Metab. 2008 Jun;9(5):363-73. doi: 10.2174/138920008784746346.

Abstract

CYP2B6 has not been as fully characterized at the molecular level as other members of the human cytochrome P450 family. As more widely used in vitro probes for characterizing the involvement of this enzyme in the metabolism of xenobiotics have become available, the number of molecules identified as CYP2B6 substrates has increased. In this study we have analyzed the available kinetic data generated by multiple laboratories with human recombinant expressed CYP2B6 and along with calculated molecular properties derived from the ChemSpider database, we have determined the molecular features that appear to be important for CYP2B6 substrates. In addition we have applied 2D and 3D QSAR methods to generate predictive pharmacophore and 2D models. For 28 molecules with K(m) data, the molecular weight (mean +/- SD) is 253.78+/-74.03, ACD/logP is 2.68+/-1.51, LogD(pH 5.5) is 1.51+/-1.43, LogD(pH 7.4) is 2.02+/-1.25, hydrogen bond donor (HBD) count is 0.57 +/-0.57, hydrogen bond acceptor (HBA) count is 2.57+/-1.37, rotatable bonds is 3.50+/-2.71 and total polar surface area (TPSA) is 27.63+/-19.42. A second set of 15 molecules without K(m) data possessed similar mean molecular property values. These properties are comparable to those of a set of 21 molecules used in a previous pharmacophore modeling study (Ekins et al., J Pharmacol Exp Ther 288 (1), 21-29, 1999). Only the LogD and HBD values were statistically significantly different between these different datasets. We have shown that CYP2B6 substrates are generally small hydrophobic molecules that are frequently central nervous system active, which may be important for drug discovery research.

摘要

与人类细胞色素P450家族的其他成员相比,CYP2B6在分子水平上尚未得到充分表征。随着越来越多广泛用于体外表征该酶参与外源性物质代谢的探针问世,被鉴定为CYP2B6底物的分子数量有所增加。在本研究中,我们分析了多个实验室利用人重组表达的CYP2B6生成的现有动力学数据,并结合从ChemSpider数据库获得的计算分子特性,确定了对CYP2B6底物似乎重要的分子特征。此外,我们应用二维和三维定量构效关系方法生成预测药效团和二维模型。对于28个有米氏常数(K(m))数据的分子,分子量(平均值±标准差)为253.78±74.03,ACD/脂水分配系数(logP)为2.68±1.51,pH 5.5时的分布系数(LogD)为1.51±1.43,pH 7.4时的LogD为2.02±1.25,氢键供体(HBD)计数为0.57±0.57,氢键受体(HBA)计数为2.57±1.37,可旋转键为3.50±2.71,总极性表面积(TPSA)为27.63±19.42。第二组15个没有K(m)数据的分子具有相似的平均分子特性值。这些特性与之前一项药效团建模研究(Ekins等人,《药物实验与治疗杂志》288(1),21 - 29,1999年)中使用的一组21个分子的特性相当。在这些不同的数据集中,只有LogD和HBD值在统计学上有显著差异。我们已经表明,CYP2B6底物通常是小的疏水分子,经常具有中枢神经系统活性,这可能对药物发现研究很重要。

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