Shi Hang, Xu Rui-Ming
W.M. Keck Structural Biology Laboratory, Cold Spring Harbor Laboratory, New York 11724, USA.
Genes Dev. 2003 Apr 15;17(8):971-6. doi: 10.1101/gad.260403.
Pre-mRNA splicing is essential for generating mature mRNA and is also important for subsequent mRNA export and quality control. The splicing history is imprinted on spliced mRNA through the deposition of a splicing-dependent multiprotein complex, the exon junction complex (EJC), at approximately 20 nucleotides upstream of exon-exon junctions. The EJC is a dynamic structure containing proteins functioning in the nuclear export and nonsense-mediated decay of spliced mRNAs. Mago nashi (Mago) and Y14 are core components of the EJC, and they form a stable heterodimer that strongly associates with spliced mRNA. Here we report a 1.85 A-resolution structure of the Drosophila Mago-Y14 complex. Surprisingly, the structure shows that the canonical RNA-binding surface of the Y14 RNA recognition motif (RRM) is involved in extensive protein-protein interactions with Mago. This unexpected finding provides important insights for understanding the molecular mechanisms of EJC assembly and RRM-mediated protein-protein interactions.
前体信使核糖核酸(pre-mRNA)剪接对于生成成熟信使核糖核酸(mRNA)至关重要,对后续的mRNA输出和质量控制也很重要。剪接历史通过一个剪接依赖性多蛋白复合物——外显子连接复合物(EJC),沉积在外显子-外显子连接点上游约20个核苷酸处,从而印记在剪接后的mRNA上。EJC是一种动态结构,包含在剪接后mRNA的核输出和无义介导的衰变中发挥作用的蛋白质。Mago nashi(Mago)和Y14是EJC的核心组分,它们形成一个稳定的异源二聚体,与剪接后的mRNA紧密结合。在此,我们报道了果蝇Mago-Y14复合物1.85埃分辨率的结构。令人惊讶的是,该结构表明Y14 RNA识别基序(RRM)的典型RNA结合表面参与了与Mago广泛的蛋白质-蛋白质相互作用。这一意外发现为理解EJC组装的分子机制和RRM介导的蛋白质-蛋白质相互作用提供了重要见解。