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Understanding the foundations of the structural similarities between marketed drugs and endogenous human metabolites

机译:了解市售药物与内源性人类代谢物之间结构相似性的基础

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Background: A recent comparison showed the extensive similarities between the structural properties of metabolites in the reconstructed human metabolic network (“endogenites”) and those of successful, marketed drugs (“drugs”). Results: Clustering indicated the related but differential population of chemical space by endogenites and drugs. Differences between the drug-endogenite similarities resulting from various encodings and judged by Tanimoto similarity could be related simply to the fraction of the bitstrings set to 1. By extracting drug/endogenite substructures, we develop a novel family of fingerprints, the Drug Endogenite Substructure (DES) encodings, based on the ranked frequency of the various substructures. These provide a natural assessment of drug-endogenite likeness, and may be used as descriptors with which to derive quantitative structure-activity relationships (QSARs). Conclusions: “Drug-endogenite likeness” seems to have utility, and leads to a simple, novel and interpretable substructure-based molecular encoding for cheminformatics.
机译:背景:最近的比较显示,在人类重建的代谢网络中,代谢物的结构特性(“内生性”)与成功上市的药物(“药品”)的结构特性之间具有广泛的相似性。结果:聚类表明内生沸石和药物的化学空间相关但不同。各种编码所产生的药物-内生岩相似性之间的差异以及通过谷本相似性判断出来的差异可能仅与设置为1的位串的分数有关。 DES)编码,基于各种子结构的排名频率。这些提供了对药物-内生石相似性的自然评估,并且可用作导出定量结构-活性关系(QSAR)的描述子。结论:“药物-内生沸石相似性”似乎具有实用性,并导致针对化学信息学的简单,新颖和可解释的基于亚结构的分子编码。

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