Wang Qiang, Liu Feiyang, Qi Shuang, Qi Ziping, Yan Xiao-E, Wang Beilei, Wang Aoli, Wang Wei, Chen Cheng, Liu Xiaochuan, Jiang Zongru, Hu Zhenquan, Wang Li, Wang Wenchao, Ren Tao, Zhang Shanchun, Yun Cai-Hong, Liu Qingsong, Liu Jing
High Magnetic Field Laboratory, Chinese Academy of Sciences, Mailbox 1110, 350 Shushanhu Road, Hefei, Anhui, 230031, PR China; CHMFL-HCMTC Target Therapy Joint Laboratory, 350 Shushanhu Road, Hefei, Anhui, 230031, PR China.
High Magnetic Field Laboratory, Chinese Academy of Sciences, Mailbox 1110, 350 Shushanhu Road, Hefei, Anhui, 230031, PR China; University of Science and Technology of China, Hefei, Anhui, 230036, PR China.
Eur J Med Chem. 2018 Apr 25;150:366-384. doi: 10.1016/j.ejmech.2018.03.003. Epub 2018 Mar 20.
Through exploration of the non-highly conserved allosteric hydrophobic pocket generated by DFG-out shifting in the inactive conformation, we discovered a highly selective type II PDGFRα kinase inhibitor 15i (CHMFL-PDGFRα-159), which exhibited strong potency against purified PDGFRα (IC: 132 nM) but not structurally similar PDGFRβ, ABL, c-KIT and VEGFR2 kinases. In addition, it displayed a high selectivity profile (S score (10) = 0.02) at the concentration of 1 μM among 468 kinases/mutants in the KINOMEscan profiling. X-ray crystal structure of 15i in complex with PDGFRα revealed a distinct binding feature in the allosteric hydrophobic pocket which might help to expand the diversity of type II kinase inhibitors. Compound 15i potently inhibited the proliferation of PDGFRα driving Chronic Eosinophilic Leukemia (CEL) cell line EOL-1 through strong blockage of PDGFRα mediated signaling pathways, arresting cell cycle progression, and induction of apoptosis. Furthermore, compound 15i effectively suppressed the EOL-1 tumor progression in the xenograft model and increased the survival rate in the engraftment tumor model.
通过探索在非活性构象中由DFG-out位移产生的非高度保守的变构疏水口袋,我们发现了一种高度选择性的II型PDGFRα激酶抑制剂15i(CHMFL-PDGFRα-159),它对纯化的PDGFRα表现出强效活性(IC:132 nM),但对结构相似的PDGFRβ、ABL、c-KIT和VEGFR2激酶无活性。此外,在KINOMEscan分析中,它在1 μM浓度下对468种激酶/突变体显示出高选择性谱(S评分(10)=0.02)。15i与PDGFRα复合物的X射线晶体结构揭示了变构疏水口袋中独特的结合特征,这可能有助于扩大II型激酶抑制剂的多样性。化合物15i通过强烈阻断PDGFRα介导的信号通路、阻止细胞周期进程和诱导凋亡,有效抑制了驱动慢性嗜酸性粒细胞白血病(CEL)细胞系EOL-1的PDGFRα的增殖。此外,化合物15i在异种移植模型中有效抑制了EOL-1肿瘤进展,并提高了移植瘤模型中的存活率。