Ballut Lionel, Marchadier Brice, Baguet Aurélie, Tomasetto Catherine, Séraphin Bertrand, Le Hir Hervé
Equipe Labélisée La Ligue, Centre de Génétique Moléculaire, associé à l'Université Paris 6, CNRS UPR2167, Avenue de la Terrasse, 91198 Gif-sur-Yvette, France.
Nat Struct Mol Biol. 2005 Oct;12(10):861-9. doi: 10.1038/nsmb990. Epub 2005 Sep 18.
The multiprotein exon junction complex (EJC) is assembled on mRNAs as a consequence of splicing. EJC core components maintain a stable grip on mRNAs even as the overall EJC protein composition evolves while mRNAs travel to the cytoplasm. Here we show that recombinant EJC subunits MLN51, MAGOH and Y14, together with the DEAD-box protein eIF4AIII bound to ATP, are necessary and sufficient to form a highly stable complex on single-stranded RNA. Cross-linking and RNase protection studies indicate that this recombinant complex recapitulates the EJC core. The stable association of the recombinant EJC core with RNA is maintained by inhibition of eIF4AIII ATPase activity by MAGOH-Y14. We elucidate the modalities of EJC binding to RNA and provide the first example of how cellular machineries may use RNA helicases to clamp several proteins onto RNA in stable and sequence-independent manners.
多蛋白外显子连接复合体(EJC)在剪接过程中组装到mRNA上。即使在mRNA向细胞质运输过程中EJC的整体蛋白质组成发生变化,EJC核心组分仍能稳定地结合在mRNA上。在此我们表明,重组EJC亚基MLN51、MAGOH和Y14,以及与ATP结合的DEAD盒蛋白eIF4AIII,对于在单链RNA上形成高度稳定的复合体是必要且充分的。交联和RNase保护研究表明,这种重组复合体概括了EJC核心。MAGOH-Y14对eIF4AIII ATP酶活性的抑制作用维持了重组EJC核心与RNA的稳定结合。我们阐明了EJC与RNA结合的方式,并提供了细胞机制如何利用RNA解旋酶以稳定且不依赖序列的方式将多种蛋白质夹在RNA上的首个例子。