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首页> 外文期刊>Journal of chemical information and modeling >Scanning structure-activity relationships with structure-activity similarity and related maps: From consensus activity cliffs to selectivity switches
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Scanning structure-activity relationships with structure-activity similarity and related maps: From consensus activity cliffs to selectivity switches

机译:使用结构-活性相似性和相关图谱扫描结构-活性关系:从共有活性悬崖到选择性开关

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摘要

Systematic description of structure-activity relationships (SARs) of data sets and structure-property relationships (SPRs) is of paramount importance in medicinal chemistry and other research fields. To this end, structure-activity similarity (SAS) maps are one of the first tools proposed to describe SARs using the concept of activity landscape modeling. One of the major goals of the SAS maps is to identify activity cliffs defined as chemical compounds with high similar structure but unexpectedly very different biological activity. Since the first publication of the SAS maps more than ten years ago, these tools have evolved and adapted over the years to analyze various types of compound collections, including structural diverse and combinatorial sets with activity for one or multiple biological end points. The development of SAS maps has led to general concepts that are applicable to other activity landscape methods such as "consensus activity cliffs" (activity cliffs common to a series of representations or descriptors) and "selectivity switches" (structural changes that completely invert the selectivity pattern of similar compounds against two biological end points). Herein, we review the development, practical applications, limitations, and perspectives of the SAS and related maps which are intuitive and powerful informatics tools to computationally analyze SPRs.
机译:数据集的结构-活性关系(SAR)和结构-属性关系(SPR)的系统描述在药物化学和其他研究领域中至关重要。为此,结构-活动相似度(SAS)映射是建议使用活动格局建模概念描述SAR的首批工具之一。 SAS图谱的主要目标之一是识别活性悬崖,该悬崖被定义为具有高度相似结构但出乎意料的生物学活性差异很大的化合物。自十多年前SAS地图首次发布以来,这些工具经过多年的发展和调整,可以分析各种类型的化合物集合,包括对一个或多个生物终点具有活性的结构多样和组合的集合。 SAS地图的发展带来了适用于其他活动景观方法的一般概念,例如“共识活动悬崖”(一系列表示或描述符所共有的活动悬崖)和“选择性开关”(完全改变选择性的结构变化)类似化合物针对两个生物学终点的模式)。在这里,我们回顾了SAS和相关地图的发展,实际应用,局限性和前景,这些是直观而强大的信息学工具,可以对SPR进行计算分析。

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