Department of Biochemistry and Molecular Genetics, University of Colorado School of Medicine, Aurora, CO 80045, USA.
Mol Cell Biol. 2010 Apr;30(8):1958-70. doi: 10.1128/MCB.01437-09. Epub 2010 Feb 12.
Eukaryotic mRNA translation begins with recruitment of the 40S ribosome complex to the mRNA 5' end through the eIF4F initiation complex binding to the 5' m(7)G-mRNA cap. Spliced leader (SL) RNA trans splicing adds a trimethylguanosine (TMG) cap and a sequence, the SL, to the 5' end of mRNAs. Efficient translation of TMG-capped mRNAs in nematodes requires the SL sequence. Here we define a core set of nucleotides and a stem-loop within the 22-nucleotide nematode SL that stimulate translation of mRNAs with a TMG cap. The structure and core nucleotides are conserved in other nematode SLs and correspond to regions of SL1 required for early Caenorhabditis elegans development. These SL elements do not facilitate translation of m(7)G-capped RNAs in nematodes or TMG-capped mRNAs in mammalian or plant translation systems. Similar stem-loop structures in phylogenetically diverse SLs are predicted. We show that the nematode eukaryotic translation initiation factor 4E/G (eIF4E/G) complex enables efficient translation of the TMG-SL RNAs in diverse in vitro translation systems. TMG-capped mRNA translation is determined by eIF4E/G interaction with the cap and the SL RNA, although the SL does not increase the affinity of eIF4E/G for capped RNA. These results suggest that the mRNA 5' untranslated region (UTR) can play a positive and novel role in translation initiation through interaction with the eIF4E/G complex in nematodes and raise the issue of whether eIF4E/G-RNA interactions play a role in the translation of other eukaryotic mRNAs.
真核生物 mRNA 的翻译起始于 40S 核糖体复合物通过 eIF4F 起始复合物与 5' m(7)G-mRNA 帽结合招募到 mRNA 的 5' 端。拼接先导 (SL) RNA 的反式剪接在 mRNA 的 5' 端添加一个三甲基鸟苷 (TMG) 帽和一个序列,即 SL。TMG 帽 mRNA 在线虫中的有效翻译需要 SL 序列。在这里,我们定义了一个由 22 个核苷酸组成的线虫 SL 中的核心核苷酸和茎环结构,该结构刺激带有 TMG 帽的 mRNA 的翻译。该结构和核心核苷酸在其他线虫 SL 中保守,对应于早期秀丽隐杆线虫发育所需的 SL1 区域。这些 SL 元件不能促进线虫中 m(7)G 帽 RNA 或哺乳动物或植物翻译系统中 TMG 帽 mRNA 的翻译。预测在系统发育上多样化的 SL 中存在类似的茎环结构。我们表明,线虫真核翻译起始因子 4E/G (eIF4E/G) 复合物能够在各种体外翻译系统中有效地翻译 TMG-SL RNA。TMG 帽 mRNA 的翻译取决于 eIF4E/G 与帽和 SL RNA 的相互作用,尽管 SL 不会增加 eIF4E/G 对帽 RNA 的亲和力。这些结果表明,mRNA 5' 非翻译区 (UTR) 通过与线虫中 eIF4E/G 复合物的相互作用,在线粒体翻译起始中可以发挥积极和新颖的作用,并提出了 eIF4E/G-RNA 相互作用是否在其他真核 mRNA 翻译中发挥作用的问题。