Lešnik Samo, Bren Urban
Laboratory of Physical Chemistry and Chemical Thermodynamics, Faculty of Chemistry and Chemical Engineering, University of Maribor, Smetanova 17, SI-2000 Maribor, Slovenia.
Faculty of Mathematics, Natural Sciences and Information Technologies, University of Primorska, Glagoljaška 8, SI-6000 Koper, Slovenia.
Foods. 2021 Dec 28;11(1):67. doi: 10.3390/foods11010067.
Rosemary ( L.) represents a medicinal plant known for its various health-promoting properties. Its extracts and essential oils exhibit antioxidative, anti-inflammatory, anticarcinogenic, and antimicrobial activities. The main compounds responsible for these effects are the diterpenes carnosic acid, carnosol, and rosmanol, as well as the phenolic acid ester rosmarinic acid. However, surprisingly little is known about the molecular mechanisms responsible for the pharmacological activities of rosemary and its compounds. To discern these mechanisms, we performed a large-scale inverse molecular docking study to identify their potential protein targets. Listed compounds were separately docked into predicted binding sites of all non-redundant holo proteins from the Protein Data Bank and those with the top scores were further examined. We focused on proteins directly related to human health, including human and mammalian proteins as well as proteins from pathogenic bacteria, viruses, and parasites. The observed interactions of rosemary compounds indeed confirm the beforementioned activities, whereas we also identified their potential for anticoagulant and antiparasitic actions. The obtained results were carefully checked against the existing experimental findings from the scientific literature as well as further validated using both redocking procedures and retrospective metrics.
迷迭香(Rosemary (L.))是一种药用植物,因其具有多种促进健康的特性而闻名。其提取物和精油具有抗氧化、抗炎、抗癌和抗菌活性。导致这些作用的主要化合物是二萜类的鼠尾草酸、鼠尾草酚和迷迭香醇,以及酚酸酯迷迭香酸。然而,令人惊讶的是,对于迷迭香及其化合物药理活性的分子机制知之甚少。为了弄清这些机制,我们进行了大规模的反向分子对接研究,以确定它们潜在的蛋白质靶点。将列出的化合物分别对接至蛋白质数据库中所有非冗余全蛋白的预测结合位点,并对得分最高的进行进一步研究。我们重点关注与人类健康直接相关的蛋白质,包括人类和哺乳动物的蛋白质以及来自致病细菌、病毒和寄生虫的蛋白质。迷迭香化合物观察到的相互作用确实证实了上述活性,同时我们还确定了它们具有抗凝血和抗寄生虫作用的潜力。将所得结果与科学文献中现有的实验结果进行仔细核对,并使用重新对接程序和回顾性指标进行进一步验证。