Center for RNA Biology and Department of Biochemistry and Biophysics, University of Rochester School of Medicine and Dentistry, Rochester, NY 14642, USA.
Nucleic Acids Res. 2013 Apr 1;41(6):3859-73. doi: 10.1093/nar/gkt046. Epub 2013 Feb 1.
Degenerate splice site sequences mark the intron boundaries of pre-mRNA transcripts in multicellular eukaryotes. The essential pre-mRNA splicing factor U2AF(65) is faced with the paradoxical tasks of accurately targeting polypyrimidine (Py) tracts preceding 3' splice sites while adapting to both cytidine and uridine nucleotides with nearly equivalent frequencies. To understand how U2AF(65) recognizes degenerate Py tracts, we determined six crystal structures of human U2AF(65) bound to cytidine-containing Py tracts. As deoxy-ribose backbones were required for co-crystallization with these Py tracts, we also determined two baseline structures of U2AF(65) bound to the deoxy-uridine counterparts and compared the original, RNA-bound structure. Local structural changes suggest that the N-terminal RNA recognition motif 1 (RRM1) is more promiscuous for cytosine-containing Py tracts than the C-terminal RRM2. These structural differences between the RRMs were reinforced by the specificities of wild-type and site-directed mutant U2AF(65) for region-dependent cytosine- and uracil-containing RNA sites. Small-angle X-ray scattering analyses further demonstrated that Py tract variations select distinct inter-RRM spacings from a pre-existing ensemble of U2AF(65) conformations. Our results highlight both local and global conformational selection as a means for universal 3' splice site recognition by U2AF(65).
退化剪接位点序列标记了真核多细胞生物中前体 mRNA 转录本的内含子边界。必需的前体 mRNA 剪接因子 U2AF(65) 面临着两个矛盾的任务,既要准确地靶向 3' 剪接位点前的多嘧啶 (Py) 序列,又要适应嘧啶和尿嘧啶核苷酸的几乎相同频率。为了了解 U2AF(65) 如何识别退化的 Py 序列,我们确定了六个结合含有胞嘧啶的 Py 序列的人 U2AF(65)的晶体结构。由于脱氧核糖骨架对于与这些 Py 序列共结晶是必需的,我们还确定了 U2AF(65) 与脱氧尿嘧啶对应物结合的两个基线结构,并将其与原始的 RNA 结合结构进行了比较。局部结构变化表明,N 端 RNA 识别基序 1 (RRM1) 对含有胞嘧啶的 Py 序列比 C 端 RRM2 更具混杂性。RRMs 之间的这些结构差异通过野生型和定点突变 U2AF(65) 对区域依赖性含胞嘧啶和尿嘧啶 RNA 位点的特异性得到了加强。小角度 X 射线散射分析进一步表明,Py 序列的变化从 U2AF(65) 构象的预先存在的集合中选择了不同的 RRMs 之间的间隔。我们的结果强调了局部和全局构象选择作为 U2AF(65) 通用 3' 剪接位点识别的一种手段。