Guerra Manuel, Dobbertin Alexandre, Legay Claire
Ecole Normale Superieure, UMR 8544 CNRS, 75005 Paris, France.
Mol Cell Neurosci. 2008 May;38(1):1-14. doi: 10.1016/j.mcn.2008.01.007. Epub 2008 Jan 26.
The 3' end of Acetylcholinesterase (AChE) pre-mRNA is processed by a complex mechanism of alternative splicing. Three different transcripts are generated and called R, H and T according respectively to the intron (intron 4') or exons (5 or 6) retained in the mature RNA. The relative expression of the specific transcripts depends on cell type, developmental stage or pathophysiological conditions. The aim of our study was to identify sequences involved in AChE pre-mRNA splicing choices. For this purpose, we constructed a minigene in which the constitutive exons were fused and followed by the entire alternative domain without 3' UTR. We transfected the wild-type or minigene mutated in the alternative domain in muscle or COS-7 cells and identified the splicing products by RPA, RT-PCR and sedimentation coefficients of the enzymatic molecular forms. We find that the alternative splicing domain contains most of the necessary signals to control splicing choices in skeletal muscle cells with the coding sequences of the domain having little effect on the splicing outcome. A branch point at an unusual location 278 nt from the 3' acceptor site of exon 6 is characterized. We further identify several regulatory sequences in the non-coding sequence of exon 5 that regulate the splicing pattern. Sequences that control the splice to exon 5 and those which influence intron 4' retention or splicing to exon 6 appear to be distinct.
乙酰胆碱酯酶(AChE)前体mRNA的3'末端通过复杂的可变剪接机制进行加工。产生了三种不同的转录本,分别根据成熟RNA中保留的内含子(内含子4')或外显子(5或6)命名为R、H和T。特定转录本的相对表达取决于细胞类型、发育阶段或病理生理条件。我们研究的目的是确定参与AChE前体mRNA剪接选择的序列。为此,我们构建了一个小基因,其中组成型外显子融合在一起,随后是整个可变结构域,没有3'非翻译区。我们将野生型或在可变结构域中发生突变的小基因转染到肌肉或COS-7细胞中,并通过RNA酶保护分析(RPA)、逆转录聚合酶链反应(RT-PCR)和酶分子形式的沉降系数来鉴定剪接产物。我们发现可变剪接结构域包含控制骨骼肌细胞中剪接选择的大部分必要信号,该结构域的编码序列对剪接结果影响很小。鉴定出一个位于距外显子6的3'接受位点278个核苷酸处的异常位置的分支点。我们进一步在调控剪接模式的外显子5的非编码序列中鉴定出几个调控序列。控制剪接到外显子5的序列以及影响内含子4'保留或剪接到外显子6的序列似乎是不同的。