Institute of Structural Biology, Helmholtz Zentrum München, 85764 Neuherberg, Germany.
Nucleic Acids Res. 2013 Jan;41(2):1343-54. doi: 10.1093/nar/gks1097. Epub 2012 Nov 21.
Recognition of the 3'-splice site is a key step in pre-mRNA splicing and accomplished by a dynamic complex comprising splicing factor 1 (SF1) and the U2 snRNP auxiliary factor 65-kDa subunit (U2AF65). Both proteins mediate protein-protein and protein-RNA interactions for cooperative RNA-binding during spliceosome assembly. Here, we report the solution structure of a novel helix-hairpin domain in the N-terminal region of SF1 (SF1(NTD)). The nuclear magnetic resonance- and small-angle X-ray scattering-derived structure of a complex of the SF1(NTD) with the C-terminal U2AF homology motif domain of U2AF65 (U2AF65(UHM)) reveals that, in addition to the known U2AF65(UHM)-SF1 interaction, the helix-hairpin domain forms a secondary, hydrophobic interface with U2AF65(UHM), which locks the orientation of the two subunits. Mutational analysis shows that the helix hairpin is essential for cooperative formation of the ternary SF1-U2AF65-RNA complex. We further show that tandem serine phosphorylation of a conserved Ser80-Pro81-Ser82-Pro83 motif rigidifies a long unstructured linker in the SF1 helix hairpin. Phosphorylation does not significantly alter the overall conformations of SF1, SF1-U2AF65 or the SF1-U2AF65-RNA complexes, but slightly enhances RNA binding. Our results indicate that the helix-hairpin domain of SF1 is required for cooperative 3'-splice site recognition presumably by stabilizing a unique quaternary arrangement of the SF1-U2AF65-RNA complex.
识别 3'-剪接位点是前体 mRNA 剪接的关键步骤,由包含剪接因子 1 (SF1) 和 U2 snRNP 辅助因子 65-kDa 亚基 (U2AF65) 的动态复合物完成。这两种蛋白质在剪接体组装过程中介导蛋白质-蛋白质和蛋白质-RNA 相互作用,以进行协同 RNA 结合。在这里,我们报告了 SF1 (SF1(NTD)) 氨基末端区域中新的螺旋发夹结构域的溶液结构。SF1(NTD) 与 U2AF65 的 C 末端 U2AF 同源基序结构域 (U2AF65(UHM)) 的核磁共振和小角 X 射线散射衍生结构表明,除了已知的 U2AF65(UHM)-SF1 相互作用外,螺旋发夹结构域与 U2AF65(UHM) 形成第二个疏水界面,锁定两个亚基的方向。突变分析表明,螺旋发夹对于三元 SF1-U2AF65-RNA 复合物的协同形成是必不可少的。我们进一步表明,保守的 Ser80-Pro81-Ser82-Pro83 模体的串联丝氨酸磷酸化使 SF1 螺旋发夹中的长非结构化接头刚性化。磷酸化不会显著改变 SF1、SF1-U2AF65 或 SF1-U2AF65-RNA 复合物的整体构象,但略微增强了 RNA 结合。我们的结果表明,SF1 的螺旋发夹结构域对于协同 3'-剪接位点识别是必需的,可能通过稳定 SF1-U2AF65-RNA 复合物的独特四级排列来实现。