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引入一类具有多个位点化学修饰的新型活性悬崖,并对单个取代物的贡献进行合理化解释。

Introducing a new category of activity cliffs with chemical modifications at multiple sites and rationalizing contributions of individual substitutions.

机构信息

Department of Life Science Informatics, b-it, LIMES Program Unit Chemical Biology and Medicinal Chemistry, Rheinische Friedrich-Wilhelms-Universität, Endenicher Allee 19c, D-53115 Bonn, Germany.

Department of Life Science Informatics, b-it, LIMES Program Unit Chemical Biology and Medicinal Chemistry, Rheinische Friedrich-Wilhelms-Universität, Endenicher Allee 19c, D-53115 Bonn, Germany.

出版信息

Bioorg Med Chem. 2019 Aug 15;27(16):3605-3612. doi: 10.1016/j.bmc.2019.06.045. Epub 2019 Jun 28.

Abstract

Activity cliffs (ACs) are formed by structurally similar active compounds with large potency differences. In medicinal chemistry, ACs are of high interest because they reveal structure-activity relationship (SAR) information and SAR determinants. Herein, we introduce a new type of ACs that consist of analog pairs with different substitutions at multiple sites (multi-site ACs; msACs). A systematic search for msACs across different classes of bioactive compounds identified more than 4000 of such ACs, most of which had substitutions at two sites (dual-site ACs; dsACs). A hierarchical analog data structure was designed to analyze contributions of individual substitutions to AC formation. Single substitutions were frequently found to determine potency differences captured by dsACs. Hence, in such cases, there was redundancy of AC information. In instances where both substitutions made significant contributions to dsACs, additive, synergistic, and compensatory effects were observed. Taken together, the results of our analysis revealed the prevalence of single-site ACs (ssACs) in analog series, followed by dsACs, which reveal different ways in which paired substitutions contribute to the formation of ACs and modulate SARs.

摘要

活性峰(ACs)是由结构相似但活性差异很大的活性化合物形成的。在药物化学中,ACs 非常有趣,因为它们揭示了构效关系(SAR)信息和 SAR 决定因素。在此,我们介绍了一种新的 ACs,它们由多个位点具有不同取代的类似物对组成(多部位 ACs;msACs)。在不同类别的生物活性化合物中对 msACs 进行系统搜索,确定了 4000 多个这样的 ACs,其中大多数在两个位点有取代(双部位 ACs;dsACs)。设计了一种层次化的类似物数据结构来分析各个取代对 AC 形成的贡献。经常发现单取代决定了 dsACs 捕获的效力差异。因此,在这种情况下,AC 信息存在冗余。在两个取代都对 dsACs 有显著贡献的情况下,观察到了加性、协同和补偿效应。总之,我们的分析结果揭示了类似物系列中单部位 ACs(ssACs)的普遍性,其次是 dsACs,它们揭示了配对取代以不同方式有助于 AC 形成和调节 SAR 的方式。

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