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Hydrophobicity maps and docking of molecular fragments with solvation

机译:疏水图和分子片段与溶剂化的对接

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Two methods for structure-based computational ligand design are reviewed. Hydrophobicity maps allow to quantitatively estimate and graphically display the propensity of nonpolar groups to bind at the surface of a protein target [Scarsi et al., Proteins Struct. Funct. Genet., 37 (1999) 565]. The program SEED (Solvation Energy for Exhaustive Docking) finds optimal positions and orientations of nonpolar fragments using the hydrophobicity maps, while polar fragments are docked with at least one hydrogen bond with the protein [Majeux et al., Proteins Struct. Funct. Genet., 37 (1999) 88]. An efficient evaluation of the binding energy, including continuum electrostatic solvation, allows to dock a library of 100 fragments into a 25-residue binding site in about five hours on a personal computer. Applications to thrombin, a key enzyme in the blood coagulation cascade, and the p38 mitogen-activated protein kinase, which is a target for the treatment of inflammatory and neurodegenerative diseases, are presented. The role of the hydrophobicity maps and structure-based docking of a fragment library in exploiting genomes to design drugs is addressed.
机译:综述了两种基于结构的计算配体设计方法。疏水性图允许定量估计并以图形方式显示非极性基团结合在蛋白质靶标表面的倾向[Scarsi等,Proteins Struct。功能Gent。,37(1999)565]。程序SEED(用于彻底对接的溶剂化能量)使用疏水图找到非极性片段的最佳位置和方向,而极性片段与蛋白质的至少一个氢键对接(Majeux等,蛋白质结构。功能Gent。,37(1999)88]。对结合能的有效评估,包括连续的静电溶剂化,可以在个人计算机上约五小时内将100个片段的文库停靠在25个残基的结合位点。提出了凝血酶的应用,凝血酶是凝血级联反应中的关键酶,p38促分裂原活化的蛋白激酶是治疗炎症和神经退行性疾病的靶标。疏水性图和片段库的基于结构的对接在开发基因组以设计药物中的作用已得到解决。

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