Guerrero-Alonso Araceli, Antunez-Mojica Mayra, Medina-Franco José L
Centro de Investigaciones Químicas IICBA, Universidad Autónoma del Estado de Morelos, Avenida Universidad 1001, Cuernavaca, MOR, 62209, México.
CONACYT-Centro de Investigaciones Químicas-IICBA, Universidad Autónoma del Estado de Morelos, Cuernavaca, 62209, Morelos, México.
Mol Inform. 2021 Nov;40(11):e2100172. doi: 10.1002/minf.202100172. Epub 2021 Aug 6.
Isothiocyanates (ITCs) have a significant impact on food and natural product chemistry. Several dietary components and food chemicals contain the isothiocyanate moiety. In addition, many ITCs interact with macromolecules of biological relevance, making these compounds relevant for potential therapeutic applications and disease prevention. However, there is a lack of systematic analysis of ITCs in chemical and biological databases. Herein, we conducted a comprehensive analysis of ITCs present in public domain databases, including natural products, food chemicals, macromolecular targets of drugs, and the Protein Data Bank. A total of 154 ITCs were found, which can be classified into seven categories: acyclic, cyclic, polycyclic, aromatic, polyaromatic, indolic, and glycosylated. 24 ITCs were reported in 18 vegetable sources, mainly in cruciferous vegetables (Brassica oleracea L.). Calculated properties of pharmaceutical relevance indicated that 11 % of the 154 ITCs would be suitable to be orally absorbed and 48 % permeate the blood-brain-barrier. It was also found that seven molecular targets have been co-crystallized with ITCs and the most frequent is the macrophage migration inhibitory factor. It is expected that this work will contribute to the sub-disciplines of natural products and food informatics.
异硫氰酸盐(ITCs)对食品和天然产物化学有着重大影响。几种膳食成分和食品化学品都含有异硫氰酸酯部分。此外,许多ITCs与具有生物学相关性的大分子相互作用,使得这些化合物在潜在治疗应用和疾病预防方面具有重要意义。然而,在化学和生物数据库中缺乏对ITCs的系统分析。在此,我们对公共领域数据库中存在的ITCs进行了全面分析,包括天然产物、食品化学品、药物的大分子靶点以及蛋白质数据库。共发现154种ITCs,可分为七类:无环、环状、多环、芳香族、多芳香族、吲哚类和糖基化。在18种蔬菜来源中报道了24种ITCs,主要存在于十字花科蔬菜(甘蓝)中。计算得出的与药物相关的性质表明,154种ITCs中有11%适合口服吸收,48%可透过血脑屏障。还发现有7个分子靶点已与ITCs共结晶,最常见的是巨噬细胞迁移抑制因子。预计这项工作将为天然产物和食品信息学的子学科做出贡献。