首页> 外文期刊>Journal of Medicinal Chemistry >Development of quantitative structure-binding affinity relationship models based on novel geometrical chemical descriptors of the protein-ligand interfaces.
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Development of quantitative structure-binding affinity relationship models based on novel geometrical chemical descriptors of the protein-ligand interfaces.

机译:基于蛋白质-配体界面的新型几何化学描述子的定量结构-结合亲和关系模型的开发。

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Novel geometrical chemical descriptors have been derived on the basis of the computational geometry of protein-ligand interfaces and Pauling atomic electronegativities (EN). Delaunay tessellation has been applied to a diverse set of 517 X-ray characterized protein-ligand complexes yielding a unique collection of interfacial nearest neighbor atomic quadruplets for each complex. Each quadruplet composition was characterized by a single descriptor calculated as the sum of the EN values for the four participating atom types. We termed these simple descriptors generated from atomic EN values and derived with the Delaunay Tessellation the ENTess descriptors and used them in the variable selection k-nearest neighbor quantitative structure-binding affinity relationship (QSBR) studies of 264 diverse protein-ligand complexes with known binding constants. Twenty-four complexes with chemically dissimilar ligands were set aside as an independent validation set, and the remaining dataset of 240 complexes was divided into multiple training and test sets. The best models were characterized by the leave-one-out cross-validated correlation coefficient q(2) as high as 0.66 for the training set and the correlation coefficient R(2) as high as 0.83 for the test set. The high predictive power of these models was confirmed independently by applying them to the validation set of 24 complexes yielding R(2) as high as 0.85. We conclude that QSBR models built with the ENTess descriptors can be instrumental for predicting the binding affinity of receptor-ligand complexes.
机译:基于蛋白质-配体界面和鲍林原子电负性(EN)的计算几何,已经得出了新颖的几何化学描述符。 Delaunay镶嵌已应用于517种X射线表征的蛋白质-配体配合物的不同集合,从而为每种配合物产生了界面最近邻原子四联体的唯一集合。每个四联体的组成都由一个描述符来表征,该描述符被计算为四种参与原子类型的EN值之和。我们称这些简单的描述符为从原子EN值生成并通过Delaunay Tessellation导出的ENTess描述符,并将其用于变量选择k-最近邻定量结构结合亲和关系(QSBR)研究中,对264种已知结合蛋白的蛋白质-配体复合物常数。将二十四种具有不同化学配体的配合物作为独立的验证集,并将剩下的240个配合物的数据集分为多个训练集和测试集。最佳模型的特征在于,训练集的留一法交叉验证相关系数q(2)高达0.66,测试集的相关系数R(2)高达0.83。这些模型的高预测能力是通过将它们应用于24个复合物的验证集而独立确认的,这些复合物产生的R(2)高达0.85。我们得出的结论是,用ENTess描述符构建的QSBR模型可用于预测受体-配体复合物的结合亲和力。

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