Institute of Biophysics and Biomedical Engineering, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
The Stephan Angeloff Institute of Microbiology, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
Molecules. 2022 May 19;27(10):3274. doi: 10.3390/molecules27103274.
The increased use of polyphenols nowadays poses the need for identification of their new pharmacological targets. Recently, structure similarity-based virtual screening of DrugBank outlined pseudopurpurin, a hydroxyanthraquinone from spp., as similar to gatifloxacin, a synthetic antibacterial agent. This suggested the bacterial DNA gyrase and DNA topoisomerase IV as potential pharmacological targets of pseudopurpurin. In this study, estimation of structural similarity to referent antibacterial agents and molecular docking in the DNA gyrase and DNA topoisomerase IV complexes were performed for a homologous series of four hydroxyanthraquinones. Estimation of shape- and chemical feature-based similarity with (S)-gatifloxacin, a DNA gyrase inhibitor, and (S)-levofloxacin, a DNA topoisomerase IV inhibitor, outlined pseudopurpurin and munjistin as the most similar structures. The docking simulations supported the hypothesis for a plausible antibacterial activity of hydroxyanthraquinones. The predicted docking poses were grouped into 13 binding modes based on spatial similarities in the active site. The simultaneous presence of 1-OH and 3-COOH substituents in the anthraquinone scaffold were emphasized as relevant features for the binding modes' variability and ability of the compounds to strongly bind in the DNA-enzyme complexes. The results reveal new potential pharmacological targets of the studied polyphenols and help in their prioritization as drug candidates and dietary supplements.
如今,多酚类物质的使用日益增多,这就需要确定它们新的药理作用靶点。最近,DrugBank 基于结构相似性的虚拟筛选方法确定了来自 spp. 的羟基蒽醌假紫菀素与合成抗菌剂加替沙星相似,这表明假紫菀素可能是细菌 DNA 回旋酶和拓扑异构酶 IV 的药理作用靶点。在这项研究中,对四个羟基蒽醌的同源系列进行了与参考抗菌剂的结构相似性估计以及在 DNA 回旋酶和拓扑异构酶 IV 复合物中的分子对接。与 DNA 回旋酶抑制剂(S)-加替沙星和 DNA 拓扑异构酶 IV 抑制剂(S)-左氧氟沙星的形状和化学特征相似性的估计表明,假紫菀素和芒柄花素与这两种抗菌剂最为相似。对接模拟实验支持了羟基蒽醌具有潜在抗菌活性的假说。预测的对接构象根据活性部位的空间相似性分为 13 种结合模式。蒽醌支架上同时存在 1-OH 和 3-COOH 取代基,这是结合模式可变性和化合物在 DNA-酶复合物中强结合能力的重要特征。研究结果揭示了所研究多酚类物质的新的潜在药理作用靶点,并有助于对其进行优先级排序,作为候选药物和膳食补充剂。