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ParaFrag—an approach for surface-based similarity comparison of molecular fragments

机译:ParaFrag-一种基于表面的分子片段相似性比较方法

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A frequent task in computer-aided drug design is to identify novel chemotypes similar in activity but structurally different to a given reference structure. Here we report the development of a novel method for atom-independent similarity comparison of molecular fragments (substructures of drug-like molecules). The fragments are characterized by their local surface properties coded in the form of 3D pharmacophores. As surface properties, we used the electrostatic potential (MEP), the local ionization energy (IEL), local electron affinity (EAL) and local polarizability (POL) calculated on isodensity surfaces. A molecular fragment can then be represented by a minimal set of extremes for each surface property. We defined a tolerance sphere for each of these extremes, thus allowing us to assess the similarity of fragments in an analogous manner to classical pharmacophore comparison. As a first application of this method we focused on comparing rigid fragments suitable for scaffold hopping. A retrospective analysis of successful scaffold hopping reported for Factor Xa inhibitors [Wood MR et al (2006) J Med Chem 49:1231] showed that our method performs well where atom-based similarity metrics fail.
机译:计算机辅助药物设计中的一项常见任务是识别活性相似但结构与给定参考结构不同的新型化学型。在这里,我们报告了一种新颖的方法,用于分子片段(类药物分子的亚结构)的原子独立相似性比较。片段的特征在于以3D药效团形式编码的局部表面特性。作为表面性质,我们使用在等密度表面上计算的静电势(MEP),局部电离能(IEL ),局部电子亲和力(EAL )和局部极化率(POL)。分子片段可以用每种表面性质的极小值来表示。我们为每个极端定义了一个公差范围,从而使我们能够以类似于经典药效基团比较的方式评估片段的相似性。作为该方法的首次应用,我们专注于比较适用于支架跳跃的刚性片段。对因子Xa抑制剂报道的成功进行支架跳跃的回顾性分析[Wood MR et al(2006)J Med Chem 49:1231]表明,我们的方法在基于原子的相似性度量失败的情况下表现良好。

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