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外显子连接复合体的Y14-Magoh核心结构

Structure of the Y14-Magoh core of the exon junction complex.

作者信息

Lau Chi-Kong, Diem Michael D, Dreyfuss Gideon, Van Duyne Gregory D

机构信息

Howard Hughes Medical Institute and Department of Biochemistry and Biophysics, University of Pennsylvania School of Medicine, Philadelphia, PA 19104-6059, USA.

出版信息

Curr Biol. 2003 May 27;13(11):933-41. doi: 10.1016/s0960-9822(03)00328-2.

Abstract

BACKGROUND

Splicing of pre-mRNA in eukaryotes imprints the resulting mRNA with a specific multiprotein complex, the exon-exon junction complex (EJC), at the sites of intron removal. The proteins of the EJC, Y14, Magoh, Aly/REF, RNPS1, Srm160, and Upf3, play critical roles in postsplicing processing, including nuclear export and cytoplasmic localization of the mRNA, and the nonsense-mediated mRNA decay (NMD) surveillance process. Y14 and Magoh are of particular interest because they remain associated with the mRNA in the same position after its export to the cytoplasm and require translation of the mRNA for removal. This tenacious, persistent, splicing-dependent, yet RNA sequence-independent, association suggests an important signaling function and must require distinct structural features for these proteins.

RESULTS

We describe the high-resolution structure and biochemical properties of the highly conserved human Y14 and Magoh proteins. Magoh has an unusual structure comprised of an extremely flat, six-stranded anti-parallel beta sheet packed against two helices. Surprisingly, Magoh binds with high affinity to the RNP motif RNA binding domain (RBD) of Y14 and completely masks its RNA binding surface.

CONCLUSIONS

The structure and properties of the Y14-Magoh complex suggest how the pre-mRNA splicing machinery might control the formation of a stable EJC-mRNA complex at splice junctions.

摘要

背景

真核生物中前体mRNA的剪接会在去除内含子的位点为产生的mRNA标记上一种特定的多蛋白复合物,即外显子-外显子连接复合物(EJC)。EJC的蛋白Y14、Magoh、Aly/REF、RNPS1、Srm160和Upf3在剪接后加工过程中发挥关键作用,包括mRNA的核输出和细胞质定位以及无义介导的mRNA降解(NMD)监测过程。Y14和Magoh特别引人关注,因为它们在mRNA输出到细胞质后仍在相同位置与mRNA结合,并且需要mRNA进行翻译才能被去除。这种紧密、持久、依赖剪接但不依赖RNA序列的结合表明了一种重要的信号功能,并且这些蛋白必定具有独特的结构特征。

结果

我们描述了高度保守的人类Y14和Magoh蛋白的高分辨率结构及生化特性。Magoh具有一种不同寻常的结构,由一个极其扁平的六链反平行β折叠堆积在两个螺旋上组成。令人惊讶的是,Magoh与Y14的RNP基序RNA结合结构域(RBD)以高亲和力结合,并完全掩盖其RNA结合表面。

结论

Y14-Magoh复合物的结构和特性揭示了前体mRNA剪接机制可能如何控制剪接连接处稳定的EJC-mRNA复合物的形成。

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