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首页> 外文期刊>Journal of Computer-Aided Molecular Design >FILO (Field Interaction Ligand Optimization): A simplex strategy for searching the optimal ligand interaction field in drug design
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FILO (Field Interaction Ligand Optimization): A simplex strategy for searching the optimal ligand interaction field in drug design

机译:FILO(场相互作用配体优化):在药物设计中寻找最佳配体相互作用场的单纯形策略

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摘要

A method (FILO, Field Interaction Ligand Optimization) for obtaining the optimal molecular interaction field was developed on the basis of the Simplex optimization procedure applied to a matrix of interaction energies obtained by performing a GRID computation on a suitable data set. The FILO procedure was tested on a set of nine HIV-1 protease inhibitors with known crystal structures. The results of FILO consist of the optimal molecular interaction field of a putative new ligand with optimal binding affinity. The final FILO model yields R-2 and R-CV(2) values of 0.993 and 0.936, respectively, and finds eight negative and four positive interaction nodes for the OH probe taken as an example. The eight H bonding interactions pointed out by FILO identified well the binding site AA-residues Gly A27, Asp A29, water 501, Gly B48 and Asp A25 of HIV-1 protease. [References: 29]
机译:在单纯形优化程序的基础上,开发了一种用于获得最佳分子相互作用场的方法(FILO,场相互作用配体优化),该程序应用于通过对合适的数据集执行GRID计算而获得的相互作用能矩阵。 FILO方法在一组九种具有已知晶体结构的HIV-1蛋白酶抑制剂上进行了测试。 FILO的结果由具有最佳结合亲和力的推定新配体的最佳分子相互作用场组成。最终的FILO模型产生的R-2和R-CV(2)值分别为0.993和0.936,并以OH探针为例找到八个负相互作用节点和四个正相互作用节点。 FILO指出的八个H键相互作用很好地鉴定了HIV-1蛋白酶的结合位点AA残基Gly A27,Asp A29,水501,Gly B48和Asp A25。 [参考:29]

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