Basu Mallik Sanchari, Pai Aravinda, Shenoy Rekha R, Jayashree B S
Department of Pharmacology, Manipal College of Pharmaceutical Sciences, Manipal University, Manipal, 576104, India.
Department of Pharmaceutical Chemistry, Manipal College of Pharmaceutical Sciences, Manipal University, Manipal, 576104, India.
J Mol Graph Model. 2017 Mar;72:81-87. doi: 10.1016/j.jmgm.2016.12.002. Epub 2016 Dec 13.
Epigenetic modulation of gene expression has drawn enormous attention among researchers globally in the present scenario. Since their discovery, Jmj-C histone demethylases were identified as useful markers in understanding the role of epigenetics in inflammatory conditions and in cancer as well. This has created arousal of interest in search of suitable candidates. Potential inhibitors from various other scaffolds such as hydroxyquinolines, hydroxamic acids and triazolopyridines have already been identified and reported. In this direction, our present study attempts to target one of the important members of the family- namely JMJD3 (also known as KDM6B), that plays a pivotal role in inflammatory and immune reactions. Using molecular modeling approaches, myricetin analogues were identified as promising inhibitors of JMJD3. Extensive literature review showed myricetin as the most promising flavonol inhibitor for this enzyme. It served as a prototype for our study and modification of it's scaffold led to generation of analogues. The ZINC database was used as a repository for natural compounds and their analogues. Using similarity search options, 65 analogues of myricetin were identified and screened against JMJD3 (PDB ID: 4ASK), using the high throughput virtual screening and ligand docking tools in Maestro Molecular Modeling platform (version 10.5) from Schrödinger, LLC. 8 analogues out of 65 were identified as the most appropriate candidates which gave the best pose in ligand docking. Their binding mode and energy calculations were analysed using induced fit docking (IFD) and prime-MMGBSA tool, respectively. Thus, our findings highlight the most promising analogues of myricetin with comparable binding affinity as well as binding energy than their counterparts that could be taken for further optimisation as inhibitors of JMJD3 in both in vitro and in vivo screening studies.
在当前情况下,基因表达的表观遗传调控已引起全球研究人员的极大关注。自发现以来,Jmj-C组蛋白去甲基化酶被确定为理解表观遗传学在炎症性疾病以及癌症中作用的有用标志物。这引发了寻找合适候选物的兴趣。已经鉴定并报道了来自各种其他支架的潜在抑制剂,如羟基喹啉、异羟肟酸和三唑并吡啶。在这个方向上,我们目前的研究试图针对该家族的一个重要成员——即JMJD3(也称为KDM6B),它在炎症和免疫反应中起关键作用。使用分子建模方法,杨梅素类似物被确定为有前景的JMJD3抑制剂。广泛的文献综述表明杨梅素是该酶最有前景的黄酮醇抑制剂。它作为我们研究的原型,对其支架进行修饰导致了类似物的产生。ZINC数据库用作天然化合物及其类似物的储存库。使用相似性搜索选项,鉴定了65种杨梅素类似物,并使用Schrödinger有限责任公司的Maestro分子建模平台(版本10.5)中的高通量虚拟筛选和配体对接工具,针对JMJD3(PDB ID:4ASK)进行筛选。65种类似物中有8种被确定为最合适的候选物,它们在配体对接中给出了最佳构象。分别使用诱导契合对接(IFD)和prime-MMGBSA工具分析了它们的结合模式和能量计算。因此,我们的研究结果突出了杨梅素最有前景的类似物,其结合亲和力和结合能量与同类物相当,可用于进一步优化,作为JMJD3在体外和体内筛选研究中的抑制剂。