Department of Pharmaceutics, Dow College of Pharmacy, Dow University of Health Sciences, Karachi, Pakistan.
Department of Pharmacy, Superior University Lahore, Lahore, Pakistan.
J Biomol Struct Dyn. 2020 Jul;38(10):2916-2927. doi: 10.1080/07391102.2019.1647287. Epub 2019 Aug 1.
Tyrosinase plays an important role in melanin biosynthesis and protects skin against ultraviolet radiations. Functional deficiency of tyrosinase results in serious dermatological diseases. Tyrosinase also participates in neuromelanin formation in the human brain, which leads to neurodegeneration resulting in Parkinson's disease. In fruits and vegetables, tyrosinase plays a critical role in senescence, causing undesired browning that results in faster deterioration and shorter shelf lines. The only commercially available tyrosinase is mushroom tyrosinase and it shows the highest homology to the mammalian tyrosinase. Although kojic acid is currently used as a tyrosinase inhibitor, they have serious side effects such as dermatitis, carcinogenesis and hepatotoxicity. Therefore, in order to develop a more active and safer tyrosinase inhibitor, 3D QSAR pharmacophore models were generated based on experimentally known inhibitors. The pharmacophore model, Hypo1, was developed with a large cost difference, high correlation coefficient and low RMS deviation. Hypo1 showed a good spatial arrangement; consisting of five-point features including two hydrogen bond acceptor, one hydrogen bond donor and two hydrophobic features. Hypo1 was further validated by cost analysis, test set and Fisher's randomisation method. Hypo1 was used as a 3D query for screening the in-house drug-like databases, and the hits were further selected by applying ADMET, Lipinski's rule of five and fit value criteria. To identify binding conformations, the obtained hits were subjected to molecular docking. Finally, molecular dynamics simulations revealed the appropriate binding modes of hit compounds. To conclude, we propose the final three hit compounds with new structural scaffolds as a virtual candidate as tyrosinase inhibitors.Communicated by Ramaswamy H. Sarma.
酪氨酸酶在黑色素生物合成中发挥重要作用,并保护皮肤免受紫外线辐射。酪氨酸酶功能缺陷会导致严重的皮肤病。酪氨酸酶还参与人类大脑中神经黑色素的形成,导致神经退行性变,从而导致帕金森病。在水果和蔬菜中,酪氨酸酶在衰老过程中起着关键作用,导致不希望的褐变,从而导致更快的恶化和更短的保质期。唯一可商业获得的酪氨酸酶是蘑菇酪氨酸酶,它与哺乳动物酪氨酸酶具有最高的同源性。尽管曲酸目前被用作酪氨酸酶抑制剂,但它们具有严重的副作用,如皮炎、致癌性和肝毒性。因此,为了开发更活跃和更安全的酪氨酸酶抑制剂,根据实验已知抑制剂生成了 3D QSAR 药效团模型。药效团模型 Hypo1 是用大成本差异、高相关系数和低 RMS 偏差开发的。Hypo1 显示出良好的空间排列;由五个特征点组成,包括两个氢键受体、一个氢键供体和两个疏水特征。Hypo1 进一步通过成本分析、测试集和 Fisher 随机化方法进行了验证。Hypo1 被用作 3D 查询,用于筛选内部药物样数据库,并且通过应用 ADMET、Lipinski 的五规则和拟合值标准进一步选择命中物。为了确定结合构象,获得的命中物被进行分子对接。最后,分子动力学模拟揭示了命中化合物的适当结合模式。总之,我们提出了最终的三个具有新结构支架的命中化合物作为虚拟候选物作为酪氨酸酶抑制剂。由 Ramaswamy H. Sarma 传达。