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SAR 和 QSAR 中的离群值:4. 变构蛋白-配体相互作用对经典定量构效关系的影响。

Outliers in SAR and QSAR: 4. effects of allosteric protein-ligand interactions on the classical quantitative structure-activity relationships.

机构信息

, San Marcos, CA, USA.

出版信息

Mol Divers. 2022 Dec;26(6):3057-3092. doi: 10.1007/s11030-021-10365-6. Epub 2022 Feb 22.

Abstract

Effects of allosteric interactions on the classical structure-activity relationship (SAR) and quantitative SAR (QSAR) have been investigated. Apprehending the outliers in SAR and QSAR studies can improve the quality, predictability, and use of QSAR in designing unknown compounds in drug discovery research. We explored allosteric protein-ligand interactions as a possible source of outliers in SAR/QSAR. We used glycogen phosphorylase as an example of a protein that has an allosteric site. Examination of the ligand-bound x-ray crystal structures of glycogen phosphorylase revealed that many inhibitors bound at more than one binding site. The results of QSAR analyses of the inhibitors included a QSAR that recognized an outlier bound at a distinctive allosteric binding site. The case provided an example of constructive use of QSAR identifying outliers with alternative binding modes. Other allosteric QSARs that captured our attention were the inverted parabola/bilinear QSARs. The x-ray crystal structures and the QSAR analyses indicated that the inverted parabola QSARs could be associated with the conformational changes in the allosteric interactions. Our results showed that the normal parabola, as well as the inverted parabola QSARs, can describe the allosteric interactions. Examination of the ligand-bound X-ray crystal structures of glycogen phosphorylase revealed that many inhibitors bound at more than one binding site. The results of QSAR analyses of the inhibitors included a QSAR that recognized an outlier bound at a distinctive allosteric binding site.

摘要

已经研究了变构相互作用对经典构效关系 (SAR) 和定量构效关系 (QSAR) 的影响。理解 SAR 和 QSAR 研究中的离群值可以提高 QSAR 在药物发现研究中设计未知化合物的质量、可预测性和可用性。我们探索了变构蛋白-配体相互作用作为 SAR/QSAR 中离群值的可能来源。我们以糖原磷酸化酶为例,它具有变构位点。对糖原磷酸化酶配体结合的 X 射线晶体结构的检查表明,许多抑制剂结合在不止一个结合位点上。抑制剂的 QSAR 分析结果包括识别结合在独特变构结合位点上的离群值的 QSAR。该案例提供了一个使用 QSAR 识别具有替代结合模式的离群值的建设性示例。引起我们注意的其他变构 QSAR 是倒抛物线/双线性 QSAR。X 射线晶体结构和 QSAR 分析表明,倒抛物线 QSAR 可能与变构相互作用中的构象变化有关。我们的结果表明,正常抛物线和倒抛物线 QSAR 都可以描述变构相互作用。对糖原磷酸化酶配体结合的 X 射线晶体结构的检查表明,许多抑制剂结合在不止一个结合位点上。抑制剂的 QSAR 分析结果包括识别结合在独特变构结合位点上的离群值的 QSAR。

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