Department of QSAR and Molecular Modelling, Institute of Biophysics and Biomedical Engineering, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
INSERM U1268 "Medicinal Chemistry and Translational Research", CiTCoM UMR 8038 CNRS-Université de Paris, 75006 Paris, France.
Molecules. 2021 Oct 21;26(21):6360. doi: 10.3390/molecules26216360.
The aim of this study was to investigate the chemical space and interactions of natural compounds with sulfotransferases (SULTs) using ligand- and structure-based in silico methods. An in-house library of natural ligands (hormones, neurotransmitters, plant-derived compounds and their metabolites) reported to interact with SULTs was created. Their chemical structures and properties were compared to those of compounds of non-natural (synthetic) origin, known to interact with SULTs. The natural ligands interacting with SULTs were further compared to other natural products for which interactions with SULTs were not known. Various descriptors of the molecular structures were calculated and analyzed. Statistical methods (ANOVA, PCA, and clustering) were used to explore the chemical space of the studied compounds. Similarity search between the compounds in the different groups was performed with the ROCS software. The interactions with SULTs were additionally analyzed by docking into different experimental and modeled conformations of SULT1A1. Natural products with potentially strong interactions with SULTs were outlined. Our results contribute to a better understanding of chemical space and interactions of natural compounds with SULT enzymes and help to outline new potential ligands of these enzymes.
本研究旨在使用基于配体和结构的计算方法研究天然化合物与磺基转移酶(SULTs)的化学空间和相互作用。创建了一个与 SULTs 相互作用的天然配体(激素、神经递质、植物衍生化合物及其代谢物)的内部库。比较了它们的化学结构和性质与已知与 SULTs 相互作用的非天然(合成)来源化合物的结构和性质。与 SULTs 相互作用的天然配体还与其他天然产物进行了比较,这些天然产物与 SULTs 的相互作用尚未可知。计算并分析了各种分子结构描述符。使用方差分析(ANOVA)、主成分分析(PCA)和聚类等统计方法探索研究化合物的化学空间。使用 ROCS 软件对不同组中的化合物进行相似性搜索。通过对接不同实验和建模的 SULT1A1 构象进一步分析与 SULTs 的相互作用。概述了与 SULTs 具有潜在强相互作用的天然产物。我们的研究结果有助于更好地理解天然化合物与 SULT 酶的化学空间和相互作用,并帮助概述这些酶的新潜在配体。