NP导航仪:一种探索天然产物化学空间的新型在线工具

Yuliana Zabolotna, P. Ertl, D. Horvath, F. Bonachéra, G. Marcou, A. Varnek
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摘要

在过去的几十亿年里,居住在地球上的无数生物产生了大量的多种化学物质,这些化学物质被称为天然产物(NPs)。随着时间的推移,这些化合物已经进化到在不同的生物体中表现出广泛的生物活性和高选择性。这使得它们成为潜在药物的极其重要的来源。然而,考虑到已报道的NPs的数量及其高度多样性,在药物设计中很难探索各自的化学空间。为了简化这项任务,我们开发了NP Navigator,这是一个免费的,用户友好的在线工具,允许导航和分析NP和NP样化合物的化学空间[1,2]。该工具的基础是241张生成地形图(GTM)的层阶集成[3,4],可视化来自开放天然产物(COCONUT)[5]的NPs的化学空间,来自ChEMBL[6]的具有一定生物活性的分子,以及来自锌[7]的可购买化合物。NP Navigator可用于高效分析NPs的各个方面,包括计算性质、化学型分布、生物活性和NPs的商业可用性。用户可以浏览来自COCONUT、ZINC和ChEMBL的数十万个分子,根据地图的颜色代码选择感兴趣的区域,而颜色代码又对应于可视化属性的特定值。此外,还可以投射几个外部分子——“化学追踪器”——来追踪含有具有所需结构特征的化合物的NP化学空间区域。通过这种方式,NP导航器允许搜索用户提供的化合物的NP和类似NP的类似物。该研究先前发表在Molecular Informatics (10.1002/min .202100068)[1]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NP Navigator: A New Online Tool for the Exploration of the Natural Products Chemical Space
Over the last few billion years, countless organisms populating our planet have produced an extensive reserve of very diverse chemicals called natural products (NPs). Over time, these compounds have evolved to exhibit a wide range of bioactivity and high selectivity in different organisms. That makes them an extremely important source of potential drugs. However, considering the number of reported NPs and their high diversity, it becomes hard to explore the respective chemical space in drug design. In order to simplify this task, we have developed NP Navigator, a free, user friendly online tool allowing the navigation and analysis of the chemical space of NPs and NP-like compounds [1,2]. The basis of this tool is a hierarchical ensemble of 241 Generative Topographic Maps (GTM) [3,4], visualizing chemical space of NPs from the COlleCtion of Open Natural ProductTs (COCONUT) [5], molecules with some biological activity from ChEMBL [6], and purchasable compounds from ZINC [7]. NP Navigator can be used for an efficient analysis of various aspects of NPs, including calculated properties, chemotype distribution, biological activity, and commercial availability of NPs. Users can browse through hundreds of thousands of molecules from COCONUT, ZINC, and ChEMBL, selecting a zone of interest based on the color code of the maps, which in turn corresponds to specific values of visualized properties. In addition, it is possible to project several external molecules—“chemical trackers”—to trace regions of the NP chemical space containing compounds with desired structural features. In such a manner, the NP Navigator allows searching for NP and NP-like analogues of user-provided compounds. This study was previously published in Molecular Informatics (10.1002/minf.202100068) [1].
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