首页> 外文期刊>Molecular pharmacology. >Ligand specificity of the genetic variants of human alpha1-acid glycoprotein: generation of a three-dimensional quantitative structure-activity relationship model for drug binding to the A variant.
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Ligand specificity of the genetic variants of human alpha1-acid glycoprotein: generation of a three-dimensional quantitative structure-activity relationship model for drug binding to the A variant.

机译:人α1-酸糖蛋白遗传变异体的配体特异性:药物与A变异体结合的三维定量结构-活性关系模型的生成。

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摘要

Human alpha1-acid glycoprotein (AAG) is a mixture of at least two genetic variants: the A variant and the F1 and/or S variant or variants, which are encoded by two different genes. In a continuation of previous studies indicating specific drug transport roles for each AAG variant according to its separate genetic origin, this work was designed to (1) determine the affinities of the two main gene products of AAG (i.e., the A variant and a mixture of the F1 and S variants) for 35 chemically diverse drugs and (2) to obtain meaningful 3D-QSARs for each binding site. Affinities were obtained by displacement experiments, leading to qualitative indications about binding site characteristics. In particular, drugs binding selectively to the A variant displayed some common structural features, but this was not seen for the F1*S variants. Three-dimensional QSAR analyses using the CoMFA method yielded a steric model for binding to the A variant, from which a simplified haptophoric model was derived. In contrast, no statistically sound model was found for the F1*S variants, possibly due (among other reasons) to an insufficient number of high affinity ligands in the set.
机译:人α1-酸糖蛋白(AAG)是至少两种遗传变异的混合物:A变异以及F1和/或S变异,由两个不同的基因编码。在先前研究的延续中,指出了每个AAG变体根据其单独的遗传起源具有特定的药物转运作用,这项工作旨在(1)确定AAG的两个主要基因产物(即A变体和混合物)的亲和力(F1和S变体的F1和S变体))和(2)为每个结合位点获得有意义的3D-QSAR。通过置换实验获得亲和力,导致关于结合位点特征的定性指示。特别是,与A变体选择性结合的药物表现出一些共同的结构特征,但是对于F1 * S变体却没有看到。使用CoMFA方法进行的三维QSAR分析产生了与A变体结合的空间模型,从中可以得到简化的触觉模型。相反,未发现F1 * S变体的统计学上合理的模型,这可能是由于(除其他原因外)集合中高亲和力配体数量不足所致。

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