Matsuo M, Masumura T, Nishio H, Nakajima T, Kitoh Y, Takumi T, Koga J, Nakamura H
Department of Pediatrics, Kobe University School of Medicine, Japan.
J Clin Invest. 1991 Jun;87(6):2127-31. doi: 10.1172/JCI115244.
Recent molecular studies have shown that in a patient with Duchenne muscular dystrophy (DMD) Kobe, the size of exon 19 of the dystrophin gene was reduced to 36 bp due to the deletion of 52 bp out of 88 bp of the exon. The consensus sequences at the 5' and 3' splice sites of exon 19 were unaltered (Matsuo, M., et al. 1990. Biochem. Biophys. Res. Commun. 170:963-967). To further elucidate the molecular nature of the defect, we examined the primary structure of cytoplasmic dystrophin mRNA of the DMD Kobe patient across the junctions of exons 18, 19, and 20 by gel electrophoresis and sequencing of polymerase chain reaction-amplified cDNA. The mRNA coding for dystrophin was reverse transcribed using random primers, and the cDNA was then enzymatically amplified in vitro. The targeted fragment was smaller than expected from the genomic DNA analysis. By sequencing of the amplified product, we found that exon 18 was joined directly to exon 20, so that exon 19 was completely absent, suggesting that this exon was skipped during processing of the dystrophin mRNA precursor. All other bases in the amplified product were unaltered. Therefore, the data strongly suggest that the internal exon deletion generates an abnormally spliced mRNA in which the sequence of exon 18 is joined to the sequence of exon 20. We propose that the deletion is responsible for abnormal processing of the DMD Kobe allele. This finding has important implications regarding the determinants of a functional splice site.
最近的分子研究表明,在一名患有杜兴氏肌营养不良症(DMD)神户型的患者中,由于肌营养不良蛋白基因第19外显子88个碱基对中的52个碱基对缺失,该外显子的大小缩减至36个碱基对。第19外显子5'和3'剪接位点的共有序列未发生改变(松尾,M.等人,1990年。《生物化学与生物物理学研究通讯》170:963 - 967)。为了进一步阐明该缺陷的分子本质,我们通过凝胶电泳和聚合酶链反应扩增的cDNA测序,检测了DMD神户型患者胞质肌营养不良蛋白mRNA跨越第18、19和20外显子连接处的一级结构。编码肌营养不良蛋白的mRNA使用随机引物进行逆转录,然后cDNA在体外进行酶促扩增。靶向片段比基因组DNA分析预期的要小。通过对扩增产物进行测序,我们发现第18外显子直接与第20外显子相连,从而第19外显子完全缺失,这表明该外显子在肌营养不良蛋白mRNA前体加工过程中被跳过。扩增产物中的所有其他碱基均未改变。因此,这些数据有力地表明,内部外显子缺失产生了一种异常剪接的mRNA,其中第18外显子的序列与第20外显子的序列相连。我们认为该缺失是导致DMD神户型等位基因异常加工的原因。这一发现对于功能性剪接位点的决定因素具有重要意义。