Laboratorio de Biología Molecular - Genética, Hospital de Pediatría Garrahan, Buenos Aires, Argentina.
Servicio de Neurología, Hospital de Pediatría Garrahan, Buenos Aires, Argentina.
Gene. 2024 Dec 20;930:148862. doi: 10.1016/j.gene.2024.148862. Epub 2024 Aug 14.
Dystrophinopathies are a group of neuromuscular disorders, inherited in an X-linked recessive manner, caused by pathogenic variants in the DMD gene. Copy number variation detection and next generation sequencing allow the detection of around 99 % of the pathogenic variants. However, some patients require mRNA studies from muscle biopsies to identify deep intronic pathogenic variants. Here, we report a child suspected of having Duchenne muscular dystrophy, with a muscle biopsy showing dystrophin deficiency, and negative molecular testing for deletions, duplications, and small variants. mRNA analysis from muscle biopsy revealed a pseudoexon activation that introduce a premature stop codon into the reading frame. gDNA sequencing allowed to identified a novel variant, c.832-186 T>G, which creates a cryptic donor splice site, recognizing the underlying mechanism causing the pseudoexon insertion. This case highlights the usefulness of the mRNA analysis from muscle biopsy when routine genetic testing is negative and clinical suspicion of dystrophinopathies remains the main clinical diagnosis suspicion.
肌营养不良症是一组神经肌肉疾病,以 X 连锁隐性方式遗传,由 DMD 基因的致病性变异引起。拷贝数变异检测和下一代测序可检测到约 99%的致病性变异。然而,一些患者需要进行肌肉活检的 mRNA 研究,以鉴定深度内含子致病性变异。在这里,我们报告了一例疑似患有杜氏肌营养不良症的儿童,肌肉活检显示肌营养不良蛋白缺乏,并且缺失、重复和小变异的分子检测均为阴性。肌肉活检的 mRNA 分析显示假外显子激活,导致阅读框中出现提前终止密码子。gDNA 测序可鉴定出一种新的变异,c.832-186T>G,该变异创建了一个隐蔽的供体位点,识别导致假外显子插入的潜在机制。该病例强调了在常规基因检测为阴性且临床怀疑肌营养不良症时,肌肉活检的 mRNA 分析的有用性,仍然是主要的临床诊断怀疑。