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卤代雌二醇衍生物受体结合特性的定量构效关系/比较分子场分析(QSAR/CoMFA)

Quantitative structure-activity relationships/comparative molecular field analysis (QSAR/CoMFA) for receptor-binding properties of halogenated estradiol derivatives.

作者信息

Gantchev T G, Ali H, van Lier J E

机构信息

MRC Group in the Radiation Sciences, Faculty of Medicine, University of Sherbrooke, Québec, Canada.

出版信息

J Med Chem. 1994 Nov 25;37(24):4164-76. doi: 10.1021/jm00050a013.

DOI:10.1021/jm00050a013
PMID:7990116
Abstract

The 3-D quantitative structure-activity relationships/comparative molecular field analysis (QSAR/CoMFA) paradigm, which considers the primary importance of the molecular fields in biological recognition, is now widely used to analyze and predict receptor-binding properties of various ligands. CoMFA was applied to build 3-D QSAR models of substituted estradiol-receptor interactions, employing 3-D molecular databases of more than 40 molecules. Ligands included the 17 alpha-ethynyl- and isomeric 17 alpha (20E/Z)-(iodovinyl)estradiols and their 7 alpha-, 11 beta-, and 12 beta-methyl (-methoxy) and -ethyl (-ethoxy) derivatives as well as selected 2- and 4-halogenated analogs. The influence of different CoMFA descriptors was studied in order to achieve the highest possible cross-validated r2, as derived from partial least-squares calculations. Special emphasis was put on the analysis of the nature of H-bonding (donor/acceptor) interactions. The model with the best predictive performance (r2 = 0.895) was used to visualize steric and electrostatic features of the QSAR (standard deviation*coefficient contour maps) and to predict receptor-binding affinities (RBA) of substituted estradiols other than those included in the original database. Twenty-seven test molecules were selected, including five which had previously been reported by other investigators. For the latter, a very good correlation with literature RBA values was obtained, which together with the high cross-validated r2 provides evidence for the high predictive capacity of the model. Among the unknown structures, the model suggests several new substitutions to derive at reasonable affinity ligands for the estrogen receptor.

摘要

三维定量构效关系/比较分子场分析(QSAR/CoMFA)范式认为分子场在生物识别中至关重要,目前已广泛用于分析和预测各种配体的受体结合特性。CoMFA被用于构建取代雌二醇-受体相互作用的三维QSAR模型,采用了包含40多个分子的三维分子数据库。配体包括17α-乙炔基-和异构的17α(20E/Z)-(碘乙烯基)雌二醇及其7α-、11β-和12β-甲基(-甲氧基)和-乙基(-乙氧基)衍生物,以及选定的2-和4-卤代类似物。研究了不同CoMFA描述符的影响,以实现由偏最小二乘法计算得出的尽可能高的交叉验证r2。特别强调了对氢键(供体/受体)相互作用性质的分析。具有最佳预测性能(r2 = 0.895)的模型用于可视化QSAR的空间和静电特征(标准差*系数等高线图),并预测原始数据库中未包含的取代雌二醇的受体结合亲和力(RBA)。选择了27个测试分子,其中包括其他研究人员先前报道过的5个分子。对于后者,与文献RBA值获得了很好的相关性,这与高交叉验证r2一起为模型的高预测能力提供了证据。在未知结构中,该模型提出了几种新的取代基,以衍生出对雌激素受体具有合理亲和力的配体。

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