Medical Research Council - Laboratory of Molecular Biology, Hills Road, Cambridge, United Kingdom.
PLoS Biol. 2010 Oct 26;8(10):e1000530. doi: 10.1371/journal.pbio.1000530.
The regulation of alternative splicing involves interactions between RNA-binding proteins and pre-mRNA positions close to the splice sites. T-cell intracellular antigen 1 (TIA1) and TIA1-like 1 (TIAL1) locally enhance exon inclusion by recruiting U1 snRNP to 5' splice sites. However, effects of TIA proteins on splicing of distal exons have not yet been explored. We used UV-crosslinking and immunoprecipitation (iCLIP) to find that TIA1 and TIAL1 bind at the same positions on human RNAs. Binding downstream of 5' splice sites was used to predict the effects of TIA proteins in enhancing inclusion of proximal exons and silencing inclusion of distal exons. The predictions were validated in an unbiased manner using splice-junction microarrays, RT-PCR, and minigene constructs, which showed that TIA proteins maintain splicing fidelity and regulate alternative splicing by binding exclusively downstream of 5' splice sites. Surprisingly, TIA binding at 5' splice sites silenced distal cassette and variable-length exons without binding in proximity to the regulated alternative 3' splice sites. Using transcriptome-wide high-resolution mapping of TIA-RNA interactions we evaluated the distal splicing effects of TIA proteins. These data are consistent with a model where TIA proteins shorten the time available for definition of an alternative exon by enhancing recognition of the preceding 5' splice site. Thus, our findings indicate that changes in splicing kinetics could mediate the distal regulation of alternative splicing.
可变剪接的调控涉及 RNA 结合蛋白与靠近剪接位点的前体 mRNA 位置之间的相互作用。T 细胞内抗原 1(TIA1)和 TIA1 样蛋白 1(TIAL1)通过招募 U1 snRNP 到 5' 剪接位点,局部增强外显子的包含。然而,TIA 蛋白对远端外显子剪接的影响尚未被探索。我们使用 UV 交联和免疫沉淀(iCLIP)发现 TIA1 和 TIAL1 在人类 RNA 上结合在相同的位置。在 5' 剪接位点下游的结合被用来预测 TIA 蛋白在增强近端外显子的包含和沉默远端外显子的包含方面的作用。这些预测通过使用剪接连接微阵列、RT-PCR 和 minigene 构建体以无偏的方式进行了验证,结果表明 TIA 蛋白通过仅在 5' 剪接位点下游结合来维持剪接保真度并调节可变剪接。令人惊讶的是,TIA 结合在 5' 剪接位点上沉默了远端盒式和可变长度外显子,而没有在靠近调节的替代 3' 剪接位点附近结合。使用 TIA-RNA 相互作用的全转录组高分辨率作图,我们评估了 TIA 蛋白的远端剪接效应。这些数据与以下模型一致:TIA 蛋白通过增强对前一个 5' 剪接位点的识别,缩短了定义替代外显子的可用时间,从而缩短了剪接时间。因此,我们的发现表明,剪接动力学的变化可能介导替代剪接的远端调节。