Becerra Soraya, Montes Marta, Hernández-Munain Cristina, Suñé Carlos
Department of Molecular Biology.
Department of Cell Biology and Immunology, Instituto de Parasitología y Biomedicina "López Neyra" (IPBLN-CSIC), PTS, Granada 18016, Spain.
RNA. 2015 Mar;21(3):438-57. doi: 10.1261/rna.047258.114. Epub 2015 Jan 20.
The first stable complex formed during the assembly of spliceosomes onto pre-mRNA substrates in mammals includes U1 snRNP, which recognizes the 5' splice site, and the splicing factors SF1 and U2AF, which bind the branch point sequence, polypyrimidine tract, and 3' splice site. The 5' and 3' splice site complexes are thought to be joined together by protein-protein interactions mediated by factors that ensure the fidelity of the initial splice site recognition. In this study, we identified and characterized PRPF40B, a putative mammalian ortholog of the U1 snRNP-associated yeast splicing factor Prp40. PRPF40B is highly enriched in speckles with a behavior similar to splicing factors. We demonstrated that PRPF40B interacts directly with SF1 and associates with U2AF(65). Accordingly, PRPF40B colocalizes with these splicing factors in the cell nucleus. Splicing assays with reporter minigenes revealed that PRPF40B modulates alternative splice site selection. In the case of Fas regulation of alternative splicing, weak 5' and 3' splice sites and exonic sequences are required for PRPF40B function. Placing our data in a functional context, we also show that PRPF40B depletion increased Fas/CD95 receptor number and cell apoptosis, which suggests the ability of PRPF40B to alter the alternative splicing of key apoptotic genes to regulate cell survival.
在哺乳动物中,剪接体组装到前体mRNA底物上时形成的第一个稳定复合物包括识别5'剪接位点的U1 snRNP,以及结合分支点序列、多嘧啶序列和3'剪接位点的剪接因子SF1和U2AF。5'和3'剪接位点复合物被认为是通过确保初始剪接位点识别保真度的因子介导的蛋白质-蛋白质相互作用连接在一起的。在本研究中,我们鉴定并表征了PRPF40B,它被认为是与U1 snRNP相关的酵母剪接因子Prp40的哺乳动物直系同源物。PRPF40B在核斑中高度富集,其行为类似于剪接因子。我们证明PRPF40B直接与SF1相互作用并与U2AF(65)缔合。因此,PRPF40B与这些剪接因子在细胞核中共定位。用报告基因小基因进行的剪接分析表明,PRPF40B调节可变剪接位点的选择。在Fas可变剪接的调控中,PRPF40B发挥功能需要弱的5'和3'剪接位点以及外显子序列。将我们的数据置于功能背景下,我们还表明PRPF40B的缺失增加了Fas/CD95受体数量和细胞凋亡,这表明PRPF40B能够改变关键凋亡基因的可变剪接以调节细胞存活。