Wilton S D, Johnsen R D, Pedretti J R, Laing N G
Australian Neuromuscular Research Institute, QE II Medical Centre, Nedlands.
Am J Med Genet. 1993 Jun 15;46(5):563-9. doi: 10.1002/ajmg.1320460521.
A single base change in the 5' splice-site of intron 19 has been identified as the cause of the Becker muscular dystrophy in a family which had previously been deduced to carry both a major deletion and another, at that stage unidentified, mutation in the same dystrophin gene [Laing et al., 1992]. RNA from a muscle biopsy of one of the Becker muscular dystrophy patients in the family was analysed using the reverse transcriptase-polymerase chain reaction (RT-PCR) to study the mature gene transcript. Exon 19 was deleted from the dystrophin mRNA but present at the genomic level. The loss of exon 19 in the mature mRNA was found to be associated with an A to C mutation in the 5' splice site of intron 19. Deletion of exon 19 should alter the reading frame of the mRNA and be associated with a severe form of muscular dystrophy; however, low levels of normal-size dystrophin message and dystrophin were present in this patient. The distance between the splice-site mutation and the secondary deletion in the dystrophin gene is such that it would seem unlikely that the initial base change could act as a premutation for the deletion. Specific primers to detect the splice-site mutation have been designed and used to genotype all relatives.
已确定内含子19的5'剪接位点的单个碱基变化是一个家族中贝克肌营养不良症的病因,该家族此前被推断在同一肌营养不良蛋白基因中同时携带一个主要缺失和另一个当时未确定的突变[莱恩等人,1992年]。使用逆转录酶-聚合酶链反应(RT-PCR)分析了该家族中一名贝克肌营养不良症患者肌肉活检的RNA,以研究成熟基因转录本。外显子19从肌营养不良蛋白mRNA中缺失,但在基因组水平上存在。发现成熟mRNA中外显子19的缺失与内含子19的5'剪接位点的A到C突变有关。外显子19的缺失应会改变mRNA的阅读框,并与严重形式的肌营养不良症相关;然而,该患者体内存在低水平的正常大小的肌营养不良蛋白信息和肌营养不良蛋白。肌营养不良蛋白基因中剪接位点突变与二次缺失之间的距离使得最初的碱基变化似乎不太可能作为缺失的前突变。已设计出检测剪接位点突变的特异性引物,并用于对所有亲属进行基因分型。