Cancer Research UK Beatson Institute, Garscube Estate, Switchback Road, Glasgow G61 1BD, UK.
School of Cancer Sciences, University of Glasgow, Garscube Estate, Switchback Road, Glasgow G61 1QH, UK.
Nucleic Acids Res. 2023 Feb 28;51(4):1859-1879. doi: 10.1093/nar/gkad030.
Altered eIF4A1 activity promotes translation of highly structured, eIF4A1-dependent oncogene mRNAs at root of oncogenic translational programmes. It remains unclear how these mRNAs recruit and activate eIF4A1 unwinding specifically to facilitate their preferential translation. Here, we show that single-stranded RNA sequence motifs specifically activate eIF4A1 unwinding allowing local RNA structural rearrangement and translation of eIF4A1-dependent mRNAs in cells. Our data demonstrate that eIF4A1-dependent mRNAs contain AG-rich motifs within their 5'UTR which specifically activate eIF4A1 unwinding of local RNA structure to facilitate translation. This mode of eIF4A1 regulation is used by mRNAs encoding components of mTORC-signalling and cell cycle progression, and renders these mRNAs particularly sensitive to eIF4A1-inhibition. Mechanistically, we show that binding of eIF4A1 to AG-rich sequences leads to multimerization of eIF4A1 with eIF4A1 subunits performing distinct enzymatic activities. Our structural data suggest that RNA-binding of multimeric eIF4A1 induces conformational changes in the RNA resulting in an optimal positioning of eIF4A1 proximal to the RNA duplex enabling efficient unwinding. Our data proposes a model in which AG-motifs in the 5'UTR of eIF4A1-dependent mRNAs specifically activate eIF4A1, enabling assembly of the helicase-competent multimeric eIF4A1 complex, and positioning these complexes proximal to stable localised RNA structure allowing ribosomal subunit scanning.
eIF4A1 活性的改变促进了高度结构化的、依赖 eIF4A1 的致癌基因 mRNA 的翻译,这些 mRNA 是致癌翻译程序的基础。目前还不清楚这些 mRNA 如何特异性地招募和激活 eIF4A1 解旋酶,以促进它们的优先翻译。在这里,我们表明,单链 RNA 序列基序特异性地激活 eIF4A1 解旋酶,允许局部 RNA 结构重排,并在细胞中翻译依赖 eIF4A1 的 mRNA。我们的数据表明,依赖 eIF4A1 的 mRNA 在其 5'UTR 中含有富含 AG 的基序,这些基序特异性地激活 eIF4A1 解旋酶,以促进局部 RNA 结构的翻译。这种 eIF4A1 调节模式被编码 mTORC 信号和细胞周期进程组分的 mRNA 所利用,使这些 mRNA 对 eIF4A1 抑制特别敏感。在机制上,我们表明,eIF4A1 与富含 AG 的序列结合导致 eIF4A1 与 eIF4A1 亚基的多聚化,eIF4A1 亚基执行不同的酶活性。我们的结构数据表明,多聚体 eIF4A1 对 RNA 的结合导致 RNA 构象发生变化,从而使 eIF4A1 最佳定位在 RNA 双链体附近,从而能够有效地解旋。我们的数据提出了一个模型,即依赖 eIF4A1 的 mRNA 5'UTR 中的 AG 基序特异性地激活 eIF4A1,使解旋酶功能齐全的多聚体 eIF4A1 复合物组装,并将这些复合物定位在稳定的局部化 RNA 结构附近,从而允许核糖体亚基扫描。