Bono Fulvia, Ebert Judith, Lorentzen Esben, Conti Elena
European Molecular Biology Laboratory, EMBL, Meyerhofstrasse 1, D-69117 Heidelberg, Germany.
Cell. 2006 Aug 25;126(4):713-25. doi: 10.1016/j.cell.2006.08.006.
The exon junction complex (EJC) plays a major role in posttranscriptional regulation of mRNA in metazoa. The EJC is deposited onto mRNA during splicing and is transported to the cytoplasm where it influences translation, surveillance, and localization of the spliced mRNA. The complex is formed by the association of four proteins (eIF4AIII, Barentsz [Btz], Mago, and Y14), mRNA, and ATP. The 2.2 A resolution structure of the EJC reveals how it stably locks onto mRNA. The DEAD-box protein eIF4AIII encloses an ATP molecule and provides the binding sites for six ribonucleotides. Btz wraps around eIF4AIII and stacks against the 5' nucleotide. An intertwined network of interactions anchors Mago-Y14 and Btz at the interface between the two domains of eIF4AIII, effectively stabilizing the ATP bound state. Comparison with the structure of the eIF4AIII-Btz subcomplex that we have also determined reveals that large conformational changes are required upon EJC assembly and disassembly.
外显子连接复合体(EJC)在后生动物mRNA的转录后调控中起主要作用。EJC在剪接过程中沉积到mRNA上,并被转运到细胞质中,在那里它影响剪接后mRNA的翻译、监测和定位。该复合体由四种蛋白质(eIF4AIII、巴伦支蛋白[Btz]、马戈蛋白和Y14)、mRNA和ATP结合而成。EJC的2.2埃分辨率结构揭示了它如何稳定地锁定在mRNA上。DEAD盒蛋白eIF4AIII包裹着一个ATP分子,并为六个核糖核苷酸提供结合位点。Btz围绕着eIF4AIII并与5'核苷酸堆叠。一个相互交织的相互作用网络将马戈蛋白-Y14和Btz锚定在eIF4AIII两个结构域之间的界面处,有效地稳定了ATP结合状态。与我们也已确定的eIF4AIII-Btz亚复合体的结构比较表明,EJC组装和解聚时需要发生大的构象变化。