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一种基于能量分析生成基于结构的药效团的新方法。

Novel method for generating structure-based pharmacophores using energetic analysis.

作者信息

Salam Noeris K, Nuti Roberto, Sherman Woody

机构信息

Schrödinger, Inc., 120 West 45th Street, 29th Floor, New York, New York 10036, USA.

出版信息

J Chem Inf Model. 2009 Oct;49(10):2356-68. doi: 10.1021/ci900212v.

Abstract

We describe a novel method to develop energetically optimized, structure-based pharmacophores for use in rapid in silico screening. The method combines pharmacophore perception and database screening with protein-ligand energetic terms computed by the Glide XP scoring function to rank the importance of pharmacophore features. We derive energy-optimized pharmacophore hypotheses for 30 pharmaceutically relevant crystal structures and screen a database to assess the enrichment of active compounds. The method is compared to three other approaches: (1) pharmacophore hypotheses derived from a systematic assessment of receptor-ligand contacts, (2) Glide SP docking, and (3) 2D ligand fingerprint similarity. The method developed here shows better enrichments than the other three methods and yields a greater diversity of actives than the contact-based pharmacophores or the 2D ligand similarity. Docking produces the most cases (28/30) with enrichments greater than 10.0 in the top 1% of the database and on average produces the greatest diversity of active molecules. The combination of energy terms from a structure-based analysis with the speed of a ligand-based pharmacophore search results in a method that leverages the strengths of both approaches to produce high enrichments with a good diversity of active molecules.

摘要

我们描述了一种开发能量优化的、基于结构的药效团的新方法,用于快速的计算机模拟筛选。该方法将药效团识别和数据库筛选与通过Glide XP评分函数计算的蛋白质-配体能量项相结合,以对药效团特征的重要性进行排名。我们为30个药学相关的晶体结构推导了能量优化的药效团假设,并筛选了一个数据库以评估活性化合物的富集情况。该方法与其他三种方法进行了比较:(1)通过对受体-配体相互作用进行系统评估得出的药效团假设,(2)Glide SP对接,以及(3)二维配体指纹相似性。此处开发的方法比其他三种方法显示出更好的富集效果,并且比基于接触的药效团或二维配体相似性产生的活性物质具有更大的多样性。对接在数据库的前1%中产生了最多的富集倍数大于10.0的情况(28/30),并且平均产生了最大多样性的活性分子。基于结构分析的能量项与基于配体的药效团搜索速度相结合,产生了一种利用两种方法的优势来实现高富集且活性分子具有良好多样性的方法。

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