College of Clinical Pharmacy, King Faisal University, P.O. 400, Al-Hasaa, 31982, Saudi Arabia.
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Helwan University, Ein Helwan, Cairo, 11795, Egypt.
Sci Rep. 2018 Jun 4;8(1):8565. doi: 10.1038/s41598-018-26998-x.
Fungal infections are spreading widely worldwide, and the types of treatment are limited due to the lack of diverse therapeutic agents and their associated side effects and toxicity. The discovery of new antifungal classes is vital and critical. We discovered the antifungal activity of abscisic acid through a rational drug design methodology that included the building of homology models for fungal chorismate mutases and a pharmacophore model derived from a transition state inhibitor. Ligand-based virtual screening resulted in some hits that were filtered using molecular docking and molecular dynamic simulations studies. Both in silico methods and in vitro antifungal assays were used as tools to select and validate the abscisic acid repurposing. Abscisic acid inhibition assays confirmed the inhibitory effect of abscisic acid on chorismate mutase through the inhibition of phenylpyruvate production. The repositioning of abscisic acid, the well-known and naturally occurring plant growth regulator, as a potential antifungal agent because of its suggested action as an inhibitor to several fungal chorismate mutases was the main result of this work.
真菌病在全球范围内广泛传播,由于缺乏多样化的治疗药物及其相关的副作用和毒性,治疗方法有限。发现新的抗真菌类药物至关重要。我们通过包括构建真菌分支酸变位酶同源模型和基于过渡态抑制剂的药效团模型的合理药物设计方法发现了脱落酸的抗真菌活性。基于配体的虚拟筛选产生了一些命中结果,然后使用分子对接和分子动力学模拟研究进行了筛选。计算机方法和体外抗真菌测定都被用作选择和验证脱落酸再利用的工具。脱落酸抑制测定通过抑制苯丙酮酸的产生证实了脱落酸对分支酸变位酶的抑制作用。脱落酸是一种众所周知的天然植物生长调节剂,由于其作为几种真菌分支酸变位酶抑制剂的作用,被重新定位为一种有潜力的抗真菌药物,这是这项工作的主要结果。