Sayyah Jacqueline, Magis Andrew, Ostrov David A, Allan Robert W, Braylan Raul C, Sayeski Peter P
Department of Physiology and Functional Genomics, University of Florida College of Medicine, Gainesville, FL 32610, USA.
Mol Cancer Ther. 2008 Aug;7(8):2308-18. doi: 10.1158/1535-7163.MCT-08-0279.
Jak2 tyrosine kinase is essential for animal development and hyperkinetic Jak2 function has been linked to a host of human diseases. Control of this pathway using Jak2-specific inhibitors would therefore potentially serve as a useful research tool and/or therapeutic agent. Here, we used a high-throughput program called DOCK to predict the ability of 20,000 small molecules to interact with a structural pocket adjacent to the ATP-binding site of murine Jak2. One small molecule, 2-methyl-1-phenyl-4-pyridin-2-yl-2-(2-pyridin-2-ylethyl)butan-1-one (herein designated as Z3), bound to Jak2 with a favorable energy score. Z3 inhibited Jak2-V617F and Jak2-WT autophosphorylation in a dose-dependent manner but was not cytotoxic to cells at concentrations that inhibited kinase activity. Z3 selectively inhibited Jak2 kinase function with no effect on Tyk2 or c-Src kinase function. Z3 significantly inhibited proliferation of the Jak2-V617F-expressing, human erythroleukemia cell line, HEL 92.1.7. The Z3-mediated reduction in cell proliferation correlated with reduced Jak2 and STAT3 tyrosine phosphorylation levels as well as marked cell cycle arrest. Finally, Z3 inhibited the growth of hematopoietic progenitor cells isolated from the bone marrow of an essential thrombocythemia patient harboring the Jak2-V617F mutation and a polycythemia vera patient carrying a Jak2-F537I mutation. Collectively, the data suggest that Z3 is a novel specific inhibitor of Jak2 tyrosine kinase.
Jak2酪氨酸激酶对动物发育至关重要,其功能亢进与多种人类疾病相关。因此,使用Jak2特异性抑制剂来控制该信号通路可能会成为一种有用的研究工具和/或治疗药物。在此,我们使用了一个名为DOCK的高通量程序来预测20000种小分子与小鼠Jak2的ATP结合位点相邻的结构口袋相互作用的能力。一种小分子,2-甲基-1-苯基-4-吡啶-2-基-2-(2-吡啶-2-基乙基)丁-1-酮(在此指定为Z3),以良好的能量得分与Jak2结合。Z3以剂量依赖的方式抑制Jak2-V617F和Jak2-WT的自磷酸化,但在抑制激酶活性的浓度下对细胞没有细胞毒性。Z3选择性地抑制Jak2激酶功能,对Tyk2或c-Src激酶功能没有影响。Z3显著抑制表达Jak2-V617F的人红白血病细胞系HEL 92.1.7的增殖。Z3介导的细胞增殖减少与Jak2和STAT3酪氨酸磷酸化水平降低以及明显的细胞周期停滞相关。最后,Z3抑制了从一名携带Jak2-V617F突变的原发性血小板增多症患者和一名携带Jak2-F537I突变的真性红细胞增多症患者的骨髓中分离出的造血祖细胞的生长。总体而言,这些数据表明Z3是一种新型的Jak2酪氨酸激酶特异性抑制剂。