Shan Jufang, Zheng Jie J
Department of Structural Biology, St. Jude Children's Research Hospital, 322 N. Lauderdale St., MS #311, Memphis, TN 38105, USA.
J Comput Aided Mol Des. 2009 Jan;23(1):37-47. doi: 10.1007/s10822-008-9236-1. Epub 2008 Sep 9.
Because of advances in the high-throughput screening technology, identification of a hit that can bind to a target protein has become a relatively easy task; however, in the process of drug discovery, the following hit-to-lead and lead optimization still remain challenging. In a typical hit-to-lead and lead optimization process, the analogues of the most promising hits are synthesized for the development of structure-activity relationship (SAR) analysis, and in turn, in the effort of optimization of lead compounds, such analysis provides guidance for the further synthesis. The synthesis processes are usually long and labor-intensive. In silico searching has becoming an alternative approach to explore SAR especially with millions of compounds ready to be screened and most of them can be easily obtained. Here, we report our discovery of 15 new Dishevelled PDZ domain inhibitors by using such an approach. In our studies, we first developed a pharmacophore model based on NSC668036, an inhibitor previously identified in our laboratory; based on the model, we then screened the ChemDiv database by using an algorithm that combines similarity search and docking procedures; finally, we selected potent inhibitors based on docking analysis and examined them by using NMR spectroscopy. NMR experiments showed that all the 15 compounds we chose bound to the PDZ domain tighter than NSC668036.
由于高通量筛选技术的进步,识别能够与目标蛋白结合的活性化合物已成为一项相对容易的任务;然而,在药物研发过程中,后续的活性化合物到先导化合物的转化以及先导化合物的优化仍然具有挑战性。在典型的活性化合物到先导化合物的转化及先导化合物优化过程中,会合成最有前景的活性化合物的类似物,用于开展构效关系(SAR)分析,反过来,在先导化合物优化工作中,此类分析为进一步的合成提供指导。合成过程通常漫长且耗费人力。计算机辅助筛选已成为探索构效关系的一种替代方法,特别是有数以百万计的化合物可供筛选,并且其中大多数都很容易获得。在此,我们报告通过使用这种方法发现了15种新的Dishevelled PDZ结构域抑制剂。在我们的研究中,我们首先基于NSC668036(我们实验室之前鉴定出的一种抑制剂)开发了一个药效团模型;基于该模型,我们随后使用一种结合相似性搜索和对接程序的算法筛选了ChemDiv数据库;最后,我们基于对接分析选择了强效抑制剂,并通过核磁共振波谱对其进行检测。核磁共振实验表明,我们选择的所有15种化合物与PDZ结构域的结合都比NSC668036更紧密。