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Comparative binding energy analysis considering multiple receptors: A step toward 3D-QSAR models for multiple targets

机译:考虑多个受体的比较结合能分析:迈向针对多个目标的3D-QSAR模型的一步

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摘要

Comparative binding energy analysis, a technique to derive receptor-based three-dimensional quantitative structure-activity relationships (3D-QSAR), is herein extended to consider both affinity and selectivity in the derivation of the QSAR model. The extension is based on allowing multiple structurally related receptors to enter the X-matrix employed in the derivation of the structure-activity model. As a result, a single model common to all of them is obtained that considers both intra- and inter-receptor affinity differences for a given congeneric series. We applied the technique to a series of 88 3-amidinophenylalanines, binding to thrombin, trypsin, and factor Xa (fXa). A single predictive regression model for the three receptors involving 202 complexes, with a leave-one out (LOO) cross-validated Q(2) of 0.689, was obtained, and selectivity requirements were investigated. We find that total or partial occupancy of any of the three main pockets in the binding site (D-site, P-site, and the rim of the S1-site) leads to higher affinity across the family. However, the fact that thrombin can make stronger interactions in the P-site, as a result of its exclusive 60-loop, makes of this site a specificity pocket for this thrombin. Occupancy of the D-site leads to more active inhibitors toward fXa for the same reason, but the model does not highlight strongly the D-box because inhibitors are too short to fully occupy it. Negative charge density in the neighborhood of position 88 (a Lys insertion in thrombin) is found to be a determinant for thrombin recognition. These results were consistent with previous studies on selectivity in the thrombin/ trypsin/ fXa system.
机译:比较性结合能分析是一种获得基于受体的三维定量结构-活性关系(3D-QSAR)的技术,在此扩展为考虑QSAR模型推导中的亲和力和选择性。该扩展基于允许多个结构相关的受体进入在结构活性模型的推导中使用的X矩阵。结果,获得了所有模型共有的单个模型,该模型考虑了给定同类序列的受体内和受体间亲和力差异。我们将该技术应用于一系列88种3- 3-基苯丙氨酸,可与凝血酶,胰蛋白酶和Xa因子(fXa)结合。获得了涉及202个复合物的三个受体的单预测回归模型,其中留一法(LOO)交叉验证的Q(2)为0.689,并研究了选择性要求。我们发现,在结合位点(D位点,P位点和S1位点的边缘)中三个主要口袋中的任何一个的全部或部分占用都会导致整个家庭的亲和力更高。然而,由于其独特的60环,凝血酶可以在P位点上产生更强的相互作用,这一事实使该位点成为该凝血酶的特异性囊袋。出于相同的原因,D位点的占用会导致更多的活性抑制剂趋向于fXa,但是该模型并未突出显示D-box,因为抑制剂太短而无法完全占据它。发现88位附近的负电荷密度(凝血酶中的Lys插入)是凝血酶识别的决定因素。这些结果与以前在凝血酶/胰蛋白酶/ fXa系统中的选择性研究一致。

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