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Drug-likeness analysis of traditional Chinese medicines: 2. Characterization of scaffold architectures for drug-like compounds, non-drug-like compounds, and natural compounds from traditional Chinese medicines

机译:中药的类药物分析:2.表征中药类药物,非类药物和天然化合物的支架结构

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Background In order to better understand the structural features of natural compounds from traditional Chinese medicines, the scaffold architectures of drug-like compounds in MACCS-II Drug Data Report (MDDR), non-drug-like compounds in Available Chemical Directory (ACD), and natural compounds in Traditional Chinese Medicine Compound Database (TCMCD) were explored and compared. Results First, the different scaffolds were extracted from ACD, MDDR and TCMCD by using three scaffold representations, including Murcko frameworks, Scaffold Tree, and ring systems with different complexity and side chains. Then, by examining the accumulative frequency of the scaffolds in each dataset, we observed that the Level 1 scaffolds of the Scaffold Tree offer advantages over the other scaffold architectures to represent the scaffold diversity of the compound libraries. By comparing the similarity of the scaffold architectures presented in MDDR, ACD and TCMCD, structural overlaps were observed not only between MDDR and TCMCD but also between MDDR and ACD. Finally, Tree Maps were used to cluster the Level 1 scaffolds of the Scaffold Tree and visualize the scaffold space of the three datasets. Conclusion The analysis of the scaffold architectures of MDDR, ACD and TCMCD shows that, on average, drug-like molecules in MDDR have the highest diversity while natural compounds in TCMCD have the highest complexity. According to the Tree Maps, it can be observed that the Level 1 scaffolds present in MDDR have higher diversity than those presented in TCMCD and ACD. However, some representative scaffolds in MDDR with high frequency show structural similarities to those in TCMCD and ACD, suggesting that some scaffolds in TCMCD and ACD may be potentially drug-like fragments for fragment-based and de novo drug design.
机译:背景为了更好地了解中药中天然化合物的结构特征,MACCS-II药物数据报告(MDDR)中的类药物化合物,可得化学目录(ACD)中的非类药物化合物的支架结构,探索和比较了中药化合物数据库(TCMCD)中的天然化合物。结果首先,通过使用三种支架表示法从ACD,MDDR和TCMCD中提取不同的支架,包括Murcko框架,支架树以及具有不同复杂性和侧链的环系统。然后,通过检查每个数据集中支架的累积频率,我们观察到支架树的1级支架提供了优于其他支架体系结构的优势,以代表化合物库的支架多样性。通过比较在MDDR,ACD和TCMCD中提供的支架架构的相似性,不仅在MDDR和TCMCD之间而且在MDDR和ACD之间观察到结构重叠。最后,使用树图对支架树的1级支架进行聚类,并可视化三个数据集的支架空间。结论对MDDR,ACD和TCMCD支架结构的分析表明,平均而言,MDDR中的类药物分子具有最高的多样性,而TCMCD中的天然化合物具有最高的复杂性。根据树图,可以观察到,MDDR中存在的1级支架比TCMCD和ACD中存在的1级支架具有更高的多样性。但是,MDDR中一些具有代表性的高频支架与TCMCD和ACD中的支架结构相似,这表明TCMCD和ACD中的某些支架可能是基于片段和从头设计药物的潜在药物样片段。

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