RNA Systems Biochemistry Laboratory, RIKEN Cluster for Pioneering Research, Wako, Saitama, Japan.
Department of Computational Biology and Medical Sciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Chiba, Japan.
Nat Commun. 2024 Sep 2;15(1):7418. doi: 10.1038/s41467-024-51635-9.
Small-molecule compounds that elicit mRNA-selective translation repression have attracted interest due to their potential for expansion of druggable space. However, only a limited number of examples have been reported to date. Here, we show that desmethyl desamino pateamine A (DMDA-PatA) represses translation in an mRNA-selective manner by clamping eIF4A, a DEAD-box RNA-binding protein, onto GNG motifs. By systematically comparing multiple eIF4A inhibitors by ribosome profiling, we found that DMDA-PatA has unique mRNA selectivity for translation repression. Unbiased Bind-n-Seq reveals that DMDA-PatA-targeted eIF4A exhibits a preference for GNG motifs in an ATP-independent manner. This unusual RNA binding sterically hinders scanning by 40S ribosomes. A combination of classical molecular dynamics simulations and quantum chemical calculations, and the subsequent development of an inactive DMDA-PatA derivative reveals that the positive charge of the tertiary amine on the trienyl arm induces G selectivity. Moreover, we identified that DDX3, another DEAD-box protein, is an alternative DMDA-PatA target with the same effects on eIF4A. Our results provide an example of the sequence-selective anchoring of RNA-binding proteins and the mRNA-selective inhibition of protein synthesis by small-molecule compounds.
小分子化合物通过引发 mRNA 选择性翻译抑制作用而引起关注,因为它们有可能扩大可用药理学领域。然而,迄今为止,仅有有限数量的例子得到了报道。在这里,我们展示了去甲去氨基培高利特 A(DMDA-PatA)通过将 DEAD 盒 RNA 结合蛋白 eIF4A 夹在 GNG 基序上,以 mRNA 选择性方式抑制翻译。通过核糖体分析系统比较多种 eIF4A 抑制剂,我们发现 DMDA-PatA 对翻译抑制具有独特的 mRNA 选择性。无偏 Bind-n-Seq 揭示,DMDA-PatA 靶向的 eIF4A 以 ATP 非依赖性方式优先结合 GNG 基序。这种不寻常的 RNA 结合会在空间上阻碍 40S 核糖体的扫描。经典分子动力学模拟和量子化学计算的组合,以及随后开发的非活性 DMDA-PatA 衍生物表明,三烯臂上的叔胺正电荷诱导 G 基序的选择性。此外,我们发现另一种 DEAD 盒蛋白 DDX3 是 DMDA-PatA 的替代靶标,对 eIF4A 具有相同的作用。我们的结果提供了一个小分子化合物通过序列选择性锚定 RNA 结合蛋白和 mRNA 选择性抑制蛋白质合成的例子。