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由于LAMA2基因的剪接突变导致外显子跳跃和mRNA水平显著降低而引起的严重MDC1A先天性肌营养不良。

Severe MDC1A congenital muscular dystrophy due to a splicing mutation in the LAMA2 gene resulting in exon skipping and significant decrease of mRNA level.

作者信息

Siala Olfa, Louhichi Nacim, Triki Chahnez, Morinière Madeleine, Rebai Ahmed, Richard Pascale, Guicheney Pascale, Baklouti Faouzi, Fakhfakh Faiza

机构信息

Laboratoire de Génétique Moléculaire Humaine, Faculté de Médecine de Sfax, 3029 Sfax, Tunisia.

出版信息

Genet Test. 2007 Fall;11(3):199-207. doi: 10.1089/gte.2006.0517.

Abstract

Congenital muscular dystrophies (CMDs) are a clinically and genetically heterogeneous group of neuromuscular disorders, with autosomal recessive inheritance. We report a patient with severe congenital muscular dystrophy and total deficiency in the laminin alpha2 chain. Genetic analyses showed a linkage to the MDC1A locus for the patient's family, and DNA sequencing revealed in the propositus of a new homozygous mutation in the donor splice site of intron 58 of the LAMA2 gene. RT-PCR experiments performed on total RNA from a patient's muscle biopsy showed a complete skipping of exon 58 in LAMA2 cDNA and a significant decrease in the LAMA2 mRNA level. This exon skipping altered the open reading frame of the mutant transcript and generated a premature termination codon (PTC) within exon 59, which potentially elicits the nonsense mRNA to degradation by NMD (nonsense-mediated mRNA decay). However, the residual exon 58-lacking mRNA could potentially be translated, and the resulting truncated alpha2 chain would lack its LG4 and LG5 domains that are involved in binding with alpha-dystroglycan. These results demonstrate the utility of mRNA analysis to understand the mutation primary impact and the disease phenotype in the patients.

摘要

先天性肌营养不良(CMD)是一组临床和遗传异质性的神经肌肉疾病,呈常染色体隐性遗传。我们报告了一名患有严重先天性肌营养不良且层粘连蛋白α2链完全缺乏的患者。基因分析显示该患者家系与MDC1A位点存在连锁关系,DNA测序揭示先证者的LAMA2基因第58内含子供体剪接位点出现新的纯合突变。对患者肌肉活检的总RNA进行的RT-PCR实验显示,LAMA2 cDNA中第58外显子完全跳跃,且LAMA2 mRNA水平显著降低。这种外显子跳跃改变了突变转录本的开放阅读框,并在第59外显子内产生了一个过早终止密码子(PTC),这可能会引发无义mRNA通过无义介导的mRNA降解(NMD)途径降解。然而,残留的缺少第58外显子的mRNA仍有可能被翻译,产生的截短α2链将缺乏与α- dystroglycan结合的LG4和LG5结构域。这些结果证明了mRNA分析在理解患者突变的主要影响和疾病表型方面的实用性。

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