Department of Biological Chemistry, Korea University of Science and Technology, 113 Gwahangno, Yuseong-gu, Daejeon 305-333, Republic of Korea; Chemical Kinomics Research Center, Korea Institute of Science and Technology, Seoul 130-650, Republic of Korea.
Chemical Kinomics Research Center, Korea Institute of Science and Technology, Seoul 130-650, Republic of Korea.
Eur J Med Chem. 2015 Jan 27;90:195-208. doi: 10.1016/j.ejmech.2014.11.023. Epub 2014 Nov 13.
With the aim of discovering potent and selective kinase inhibitors targeting ROS1 kinase, we designed, synthesized and screened a series of new pyrazol-4-ylpyrimidine derivatives based on our previously discovered lead compound KIST301072. Compounds 6a-e and 7a-e showed good to excellent activities against ROS1 kinase, and seven out of tested compounds were more potent than KIST301072. Compound 7c was the most potent with IC50 of 24 nM. Moreover, compound 7c showed ROS1 inhibitory selectivity of about 170-fold, relative to that of ALK sharing about 49% amino acid sequence homology with ROS1 kinase in the kinase domain. In silico modeling of 7c at ROS1 active site revealed some essential features for ROS1 inhibitory activity. Based on this study as well as the previous studies, we could build a hypothetical model predicting the required essential features for ROS1 inhibitory activity. The model validity has been tested through a second set of compounds.
为了发现针对 ROS1 激酶的有效且选择性的激酶抑制剂,我们基于先前发现的先导化合物 KIST301072,设计、合成并筛选了一系列新型吡唑-4-基嘧啶衍生物。化合物 6a-e 和 7a-e 对 ROS1 激酶表现出良好至优异的活性,其中七种测试化合物的活性强于 KIST301072。化合物 7c 的活性最强,IC50 为 24 nM。此外,化合物 7c 在激酶结构域中与 ROS1 激酶具有约 49%氨基酸序列同源性的 ALK 相比,对 ROS1 的抑制选择性约为 170 倍。7c 在 ROS1 活性位点的计算机建模揭示了其对 ROS1 抑制活性的一些基本特征。基于这项研究以及之前的研究,我们可以建立一个假设模型,预测对 ROS1 抑制活性所需的基本特征。该模型的有效性已经通过第二组化合物进行了测试。