Iwatani-Yoshihara Misa, Ito Masahiro, Ishibashi Yoshihiro, Oki Hideyuki, Tanaka Toshio, Morishita Daisuke, Ito Takashi, Kimura Hiromichi, Imaeda Yasuhiro, Aparicio Samuel, Nakanishi Atsushi, Kawamoto Tomohiro
BC Cancer Agency , Department of Molecular Oncology, Vancouver, British Columbia V5Z 1L3, Canada.
University of British Columbia , Department of Pathology and Laboratory Medicine, Vancouver, British Columbia V6T 2B5, Canada.
ACS Chem Biol. 2017 Jul 21;12(7):1760-1768. doi: 10.1021/acschembio.7b00041. Epub 2017 May 10.
Eukaryotic initiation factor 4A-3 (eIF4A3) is an Asp-Glu-Ala-Asp (DEAD) box-family adenosine triphosphate (ATP)-dependent RNA helicase. Subtypes eIF4A1 and eIF4A2 are required for translation initiation, but eIF4A3 participates in the exon junction complex (EJC) and functions in RNA metabolism including nonsense-mediated RNA decay (NMD). No small molecules for NMD inhibition via selective inhibition of eIF4A3 have been discovered. Here, we identified allosteric eIF4A3 inhibitors from a high-throughput screening campaign. Chemical optimization of the lead compounds based on ATPase activity yielded compound 2, which exhibited noncompetitive inhibition with ATP or RNA and high selectivity for eIF4A3 over other helicases. The optimized compounds suppressed the helicase activity of eIF4A3 in an ATPase-dependent manner. Hydrogen/deuterium exchange mass spectrometry demonstrated that the deuterium-incorporation pattern of compound 2 overlapped with that of an allosteric pan-eIF4A inhibitor, hippuristanol, suggesting that compound 2 binds to an allosteric region on eIF4A3. We examined NMD activity using a luciferase-based cellular reporter system and a quantitative real-time polymerase chain-reaction-based cellular system to monitor levels of endogenous NMD substrates. NMD suppression by the compounds correlated positively with their ATPase-inhibitory activity. In conclusion, we developed a novel eIF4A3 inhibitor that targets the EJC. The optimized chemical probes represent useful tools for understanding the functions of eIF4A3 in RNA homeostasis.
真核生物起始因子4A-3(eIF4A3)是一种天冬氨酸-谷氨酸-丙氨酸-天冬氨酸(DEAD)盒家族的三磷酸腺苷(ATP)依赖性RNA解旋酶。eIF4A1和eIF4A2亚型是翻译起始所必需的,但eIF4A3参与外显子连接复合体(EJC),并在包括无义介导的RNA降解(NMD)在内的RNA代谢中发挥作用。尚未发现通过选择性抑制eIF4A3来抑制NMD的小分子。在此,我们通过高通量筛选活动鉴定了变构eIF4A3抑制剂。基于ATP酶活性对先导化合物进行化学优化,得到了化合物2,它对ATP或RNA表现出非竞争性抑制,并且对eIF4A3的选择性高于其他解旋酶。优化后的化合物以ATP酶依赖性方式抑制eIF4A3的解旋酶活性。氢/氘交换质谱表明,化合物2的氘掺入模式与变构泛eIF4A抑制剂马栗树皮素的模式重叠,这表明化合物2与eIF4A3上的一个变构区域结合。我们使用基于荧光素酶的细胞报告系统和基于定量实时聚合酶链反应的细胞系统来监测内源性NMD底物水平,从而检测NMD活性。化合物对NMD的抑制作用与其ATP酶抑制活性呈正相关。总之,我们开发了一种靶向EJC的新型eIF4A3抑制剂。优化后的化学探针是了解eIF4A3在RNA稳态中功能的有用工具。