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首页> 外文期刊>Journal of Computer-Aided Molecular Design >De novo design of molecular architectures by evolutionary assembly of drug-derived building blocks
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De novo design of molecular architectures by evolutionary assembly of drug-derived building blocks

机译:通过药物衍生积木进化组装的分子架构De Novo设计

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An evolutionary algorithm was developed for fragment-based de novo design of molecules (TOPAS, TOPology-Assigning System). This stochastic method aims at generating a novel molecular structure mimicking a template structure. A set of similar to 25,000 fragment structures serves as the building block supply, which were obtained by a straightforward fragmentation procedure applied to 36,000 known drugs. Eleven reaction schemes were implemented for both fragmentation and building block assembly. This combination of drug-derived building blocks and a restricted set of reaction schemes proved to be a key for the automatic development of novel, synthetically tractable structures. In a cyclic optimization process, molecular architectures were generated from a parent structure by virtual synthesis, and the best structure of a generation was selected as the parent for the subsequent TOPAS cycle. Similarity measures were used to define 'fitness', based on 2D-structural similarity or topological pharmacophore distance between the template molecule and the variants. The concept of varying library 'diversity' during a design process was consequently implemented by using adaptive variant distributions. The efficiency of the design algorithm was demonstrated for the de novo construction of potential thrombin inhibitors mimicking peptide and non-peptide template structures. [References: 23]
机译:开发了一种用于基于片段的分子设计的进化算法(TOPA,拓扑分配系统)。这种随机方法旨在产生模仿模板结构的新型分子结构。类似于25,000个片段结构的一组用作构建块供应,其通过施加到36,000种已知药物的直接碎片过程获得。为碎片和构建块组件实施了11个反应方案。这种药物衍生的构建块和受限制的反应方案组合被证明是自动开发新颖,综合易易行结构的关键。在循环优化过程中,通过虚拟合成从父结构产生分子架构,并且选择了一代的最佳结构作为随后的TOPAS循环的父级。相似度测量用于基于模板分子和变体之间的2D结构相似性或拓扑药程距离来定义“健身”。因此,通过使用自适应变体分布来实现在设计过程中改变图书馆“多样性”的概念。为模拟肽和非肽模板结构的潜​​在凝血酶抑制剂的DE Novo构建进行了设计算法的效率。 [参考:23]

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