Gehring Niels H, Lamprinaki Styliani, Hentze Matthias W, Kulozik Andreas E
Molecular Medicine Partnership Unit, University of Heidelberg and European Molecular Biology Laboratory, Heidelberg, Germany.
PLoS Biol. 2009 May 26;7(5):e1000120. doi: 10.1371/journal.pbio.1000120.
Exon junction complexes (EJCs) link nuclear splicing to key features of mRNA function including mRNA stability, translation, and localization. We analyzed the formation of EJCs by the spliceosome, the physiological EJC assembly machinery. We studied a comprehensive set of eIF4A3, MAGOH, and BTZ mutants in complete or C-complex-arrested splicing reactions and identified essential interactions of EJC proteins during and after EJC assembly. These data establish that EJC deposition proceeds through a defined intermediate, the pre-EJC, as an ordered, sequential process that is coordinated by splicing. The pre-EJC consists of eIF4A3 and MAGOH-Y14, is formed before exon ligation, and provides a binding platform for peripheral EJC components that join after release from the spliceosome and connect the core structure with function. Specifically, we identified BTZ to bridge the EJC to the nonsense-mediated messenger RNA (mRNA) decay protein UPF1, uncovering a critical link between mRNP architecture and mRNA stability. Based on this systematic analysis of EJC assembly by the spliceosome, we propose a model of how a functional EJC is assembled in a strictly sequential and hierarchical fashion, including nuclear splicing-dependent and cytoplasmic steps.
外显子连接复合体(EJCs)将核内剪接与mRNA功能的关键特征联系起来,这些特征包括mRNA稳定性、翻译和定位。我们分析了剪接体(生理性EJC组装机制)对EJCs的形成过程。我们在完全或C复合物停滞的剪接反应中研究了一组全面的eIF4A3、MAGOH和BTZ突变体,并确定了EJC组装过程中及之后EJC蛋白的重要相互作用。这些数据表明,EJC沉积通过一个特定的中间体——前体EJC进行,这是一个由剪接协调的有序、连续过程。前体EJC由eIF4A3和MAGOH-Y14组成,在 exon 连接之前形成,并为从剪接体释放后加入的外周EJC组分提供一个结合平台,将核心结构与功能联系起来。具体而言,我们确定BTZ将EJC与无义介导的信使RNA(mRNA)衰变蛋白UPF1连接起来,揭示了mRNP结构与mRNA稳定性之间的关键联系。基于对剪接体组装EJC的系统分析,我们提出了一个功能性EJC如何以严格的顺序和层次方式组装的模型,包括核内剪接依赖性和细胞质步骤。