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外显子连接复合体的结构见解。

Structural insights into the exon junction complex.

作者信息

Le Hir Hervé, Andersen Gregers Rom

机构信息

Equipe Labélisée La Ligue, Centre de Génétique Moléculaire, associé aux Universités Paris 6 et Paris 11, CNRS UPR2167, Avenue de la Terrasse, 91198 Gif-sur-Yvette, France.

出版信息

Curr Opin Struct Biol. 2008 Feb;18(1):112-9. doi: 10.1016/j.sbi.2007.11.002.

Abstract

In higher eukaryotes, the exon junction complex is loaded onto spliced mRNAs at a precise position upstream of exon junctions, where it remains during nuclear export and cytoplasmic localisation until it is removed during the first translation round. The exon junction core complex consists of four proteins that form a dynamic binding platform for a variety of peripheral factors involved in mRNA metabolism. In the complex, mRNA binding is mediated by the DEAD-box protein eIF4AIII, and inhibition of its ATPase activity forms the mechanistic basis for the long-term stability of the complex. Recent crystal structures of the exon junction complex and eIF4AIII have provided the structural framework for investigating the function of the eIF4AIII ATPase and for localisation of surface patches involved in binding peripheral factors. Additionally, by comparison with the structure of a second DEAD-box protein also bound to RNA and ATP, general principles for the ATPase and unwinding/mRNP remodelling activities for this important group of enzymes can be proposed on the basis of atomic structures.

摘要

在高等真核生物中,外显子连接复合体加载到外显子连接上游的精确位置的剪接mRNA上,在核输出和细胞质定位过程中它一直保留在那里,直到在第一轮翻译过程中被移除。外显子连接核心复合体由四种蛋白质组成,它们为参与mRNA代谢的各种外围因子形成一个动态结合平台。在该复合体中,mRNA结合由DEAD-box蛋白eIF4AIII介导,抑制其ATP酶活性构成了该复合体长期稳定性的机制基础。外显子连接复合体和eIF4AIII最近的晶体结构为研究eIF4AIII ATP酶的功能以及参与结合外围因子的表面区域定位提供了结构框架。此外,通过与同样结合RNA和ATP的第二种DEAD-box蛋白的结构进行比较,可以根据原子结构提出这一重要酶类的ATP酶以及解旋/mRNP重塑活性的一般原理。

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