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首页> 外文期刊>Turkish journal of chemistry >Ligand binding constants of the cucurbit[7]uril predicted with molecular docking: a theoretical study
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Ligand binding constants of the cucurbit[7]uril predicted with molecular docking: a theoretical study

机译:分子对接预测葫芦[7]尿素的配体结合常数:理论研究

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摘要

A binding stability order predicting, molecular docking based fast technique was developed for host--guest complexes. Molecular descriptors were applied to ligand molecules to make the binding energy based docking scoring functions more efficient and reach the $pm $0.50 log K unit theoretical precision for predictions. The goal of this work was to model complexes of cucurbit[7]uril (CB7) as a host molecule with different local anesthetics and choline and phosphonium choline molecules. The guest molecules were docked into the cavity of CB7. The binding free energy maps were correlated by Contact, Grid-Based, Hawkins GB/SA, and AMBER docking scores obtained from UCSF DOCK software. The guest molecules were clustered by the scores. Linear correlations on the ln K - docking score plots were characterized on the learning set and log K was reproduced on the test set within an accuracy of $pm $0.92 log K units.
机译:针对主体-客体复合物开发了一种结合稳定性顺序预测,基于分子对接的快速技术。将分子描述符应用于配体分子,以使基于结合能的对接评分功能更有效,并达到$ pm $ 0.50 log K单位的理论预测精度。这项工作的目的是模拟葫芦[7]尿素(CB7)作为宿主分子的配合物,该配合物具有不同的局部麻醉剂以及胆碱和phospho胆碱分子。客体分子停靠在CB7的空腔中。通过从UCSF DOCK软件获得的Contact,Grid-Based,Hawkins GB / SA和AMBER对接得分,将结合自由能图进行关联。客体分子通过分数聚类。在学习集上表征ln K-对接得分图上的线性相关性,并在测试集上复制log K,精确度为$ pm $ 0.92 log K个单位。

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