Automated site-directed drug design: the formation of molecular templates in primary structure generation.

R A Lewis, P M Dean
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引用次数: 63

Abstract

In this paper the spacer skeleton concept is used to produce molecular graphs of putative ligands for binding sites. The skeletons are transformed into molecular templates within the constraints of the accessible surface of the ligand-binding site. A distance-matrix method is used to compare ligand points with vertices of the spacer skeleton through a permutation of all possible correspondences. A tolerance parameter is used to screen for poor matches. As a result, a small number of matched vertices and ligand points are produced. These are fitted into the site by a constrained optimization routine using an analytical function. Ligand points fall within the site and are optimally positioned adjacent to the corresponding site points; other vertices of the spacer skeleton lying beneath the accessible surface of the site are clipped off. A molecular template is thereby formed with its vertices linked to the ligand points. The final step is to verify that the bonding integrity of the skeleton remains. The computational methods outlined in this paper have been tested at two binding sites: the pteridine binding site in dihydrofolate reductase and the amidinophenylpyruvate site of trypsin. Molecular graphs for both sites were generated automatically; they showed strong similarity to those of the natural ligands.

自动定位药物设计:初级结构生成中分子模板的形成。
在本文中,间隔骨架的概念被用于产生假定的配体结合位点的分子图。骨架在配体结合位点的可接近表面的限制下转化为分子模板。使用距离矩阵方法通过排列所有可能的对应关系来比较配体点与间隔骨架的顶点。容差参数用于筛选差匹配。因此,产生少量匹配的顶点和配体点。通过使用分析函数的约束优化程序将这些拟合到站点中。配体点落在所述位点内,并最佳地定位于毗邻相应位点点;位于站点可访问表面下方的间隔骨架的其他顶点被剪掉。从而形成分子模板,其顶点与配体点相连。最后一步是验证骨骼的粘合完整性。本文提出的计算方法已经在两个结合位点进行了测试:二氢叶酸还原酶的蝶啶结合位点和胰蛋白酶的氨基苯基丙酮酸位点。自动生成两个位点的分子图;它们与天然配体具有很强的相似性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character 生命科学, 发育生物学与生殖生物学, 发育生物学
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