Malka-Mahieu Hélène, Girault Isabelle, Rubington Margot, Leriche Melissa, Welsch Caroline, Kamsu-Kom Nyam, Zhao Qian, Desaubry Laurent, Vagner Stéphan, Robert Caroline
a INSERM U981 , Villejuif , France.
b Université Paris-Sud , Kremlin-Bicêtre , France.
Cell Cycle. 2016 Sep 16;15(18):2405-9. doi: 10.1080/15384101.2016.1208862. Epub 2016 Aug 11.
Activating mutations of the NRAS (neuroblastoma rat sarcoma viral oncogene) protein kinase, present in many cancers, induce a constitutive activation of both the RAS-RAF-MEK-ERK mitogen-activated protein kinase (MAPK) signal transduction pathway and the PI(3)K-AKT-mTOR, pathway. This in turn regulates the formation of the eIF4F eukaryotic translation initiation complex, comprising the eIF4E cap-binding protein, the eIF4G scaffolding protein and the eIF4A RNA helicase, which binds to the 7-methylguanylate cap (m(7)G) at the 5' end of messenger RNAs. Small molecules targeting MEK (MEKi: MEK inhibitors) have demonstrated activity in NRAS-mutant cell lines and tumors, but resistance sets in most cases within months of treatment. Using proximity ligation assays, that allows visualization of the binding of eIF4E to the scaffold protein eIF4G, generating the active eIF4F complex, we have found that resistance to MEKi is associated with the persistent formation of the eIF4F complex in MEKi-treated NRAS-mutant cell lines. Furthermore, inhibiting the eIF4A component of the eIF4F complex, with a small molecule of the flavagline/rocaglate family, synergizes with inhibiting MEK to kill NRAS-mutant cancer cell lines.
NRAS(神经母细胞瘤大鼠肉瘤病毒癌基因)蛋白激酶的激活突变存在于许多癌症中,可诱导RAS-RAF-MEK-ERK丝裂原活化蛋白激酶(MAPK)信号转导通路和PI(3)K-AKT-mTOR通路的组成性激活。这进而调节eIF4F真核翻译起始复合物的形成,该复合物由eIF4E帽结合蛋白、eIF4G支架蛋白和eIF4A RNA解旋酶组成,它与信使RNA 5'端的7-甲基鸟苷帽(m(7)G)结合。靶向MEK的小分子(MEKi:MEK抑制剂)已在NRAS突变细胞系和肿瘤中显示出活性,但在大多数情况下,治疗数月后就会产生耐药性。使用邻近连接分析,该分析可使eIF4E与支架蛋白eIF4G的结合可视化,从而生成活性eIF4F复合物,我们发现对MEKi的耐药性与MEKi处理的NRAS突变细胞系中eIF4F复合物的持续形成有关。此外,用黄酮类/罗卡类家族的小分子抑制eIF4F复合物的eIF4A成分,与抑制MEK协同作用可杀死NRAS突变癌细胞系。