Hutchison Stephen, LeBel Catherine, Blanchette Marco, Chabot Benoit
Département de Microbiologie et d'Infectiologie, Faculté de Médecine, Université de Sherbrooke, Sherbrooke, Québec J1H 5N4, Canada.
J Biol Chem. 2002 Aug 16;277(33):29745-52. doi: 10.1074/jbc.M203633200. Epub 2002 Jun 11.
In the heterogeneous nuclear ribonucleoprotein (hnRNP) A1 pre-mRNA, different regions in the introns flanking alternative exon 7B have been implicated in the production of the A1 and A1B mRNA splice isoforms. Among these, the CE1a and CE4 elements, located downstream of common exon 7 and alternative exon 7B, respectively, are bound by hnRNP A1 to promote skipping of exon 7B in vivo and distal 5' splice site selection in vitro. Here, we report that CE1a is flanked by an additional high affinity A1 binding site (CE1d). In a manner similar to CE1a, CE1d affects 5' splice site selection in vitro. Consistent with a role for hnRNP A1 in the activity of CE1d, a mutation that abrogates A1 binding abolishes distal 5' splice site activation. Moreover, the ability of CE1d to stimulate distal 5' splice site usage is lost in an HeLa extract depleted of hnRNP A/B proteins, and the addition of recombinant A1 restores the activity of CE1d. Notably, distal 5' splice site selection mediated by A1 binding sites is not compromised in an extract prepared from mouse cells that are severely deficient in hnRNP A1 proteins. In this case, we show that hnRNP A2 compensates for the A1 deficiency. Further studies with the CE4 element reveal that it also consists of two distinct portions (CE4m and CE4p), each one capable of promoting distal 5' splice site use in an hnRNP A1-dependent manner. The presence of multiple A1/A2 binding sites downstream of common exon 7 and alternative exon 7B probably plays an important role in maximizing the activity of hnRNP A1/A2 proteins.
在不均一核核糖核蛋白(hnRNP)A1前体mRNA中,侧翼于可变外显子7B的内含子中的不同区域与A1和A1B mRNA剪接异构体的产生有关。其中,分别位于共同外显子7和可变外显子7B下游的CE1a和CE4元件,被hnRNP A1结合以促进体内外显子7B的跳跃和体外远端5'剪接位点的选择。在此,我们报道CE1a侧翼还有一个额外的高亲和力A1结合位点(CE1d)。与CE1a类似,CE1d在体外影响5'剪接位点的选择。与hnRNP A1在CE1d活性中的作用一致,一个消除A1结合的突变消除了远端5'剪接位点的激活。此外,在耗尽hnRNP A/B蛋白的HeLa提取物中,CE1d刺激远端5'剪接位点使用的能力丧失,添加重组A1可恢复CE1d的活性。值得注意的是,由A1结合位点介导的远端5'剪接位点选择在由严重缺乏hnRNP A1蛋白的小鼠细胞制备的提取物中不受影响。在这种情况下,我们表明hnRNP A2补偿了A1的缺陷。对CE4元件的进一步研究表明,它也由两个不同的部分(CE4m和CE4p)组成,每个部分都能够以hnRNP A1依赖的方式促进远端5'剪接位点的使用。共同外显子7和可变外显子7B下游多个A1/A2结合位点的存在可能在最大化hnRNP A1/A2蛋白的活性中起重要作用。