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c.65-2A>G剪接位点突变与Danon病的轻度表型相关,这是由于正常LAMP2 mRNA的转录所致。

The c.65-2A>G splice site mutation is associated with a mild phenotype in Danon disease due to the transcription of normal LAMP2 mRNA.

作者信息

Cetin H, Wöhrer A, Rittelmeyer I, Gencik M, Zulehner G, Zimprich F, Ströbel T, Zimprich A

机构信息

Department of Neurology, Medical University of Vienna, Vienna, Austria.

Institute of Neurology, Medical University of Vienna, Vienna, Austria.

出版信息

Clin Genet. 2016 Oct;90(4):366-71. doi: 10.1111/cge.12724. Epub 2016 Feb 3.

Abstract

Danon disease (DD) is a rare X-linked multisystem disorder caused by mutations of the LAMP2 gene and characterized by intellectual disability, skeletal myopathy and cardiomyopathy. The survival time is severely reduced. Contrasting with the usual disease course, we report on a family with an exceptionally mild phenotype of DD despite having two potentially damaging LAMP2 mutations. Using RNA-Seq analysis, we showed that a c.65-2A>G splice site mutation results in the tissue-specific production of four different transcripts including the full-length mRNA in muscle tissue but not in leukocytes. We confirmed our results by immunohistochemistry and immunoblotting, showing the detection of LAMP2 protein only in muscle. The second mutation (c.586A>T, p.T196S) has been reported before to have an uncertain clinical significance. In our patients, however, neither of the two mutations seem to have a high enough functional impact to cause a severe phenotype. Overall, our study reveals that alternative splicing is a potential mechanism in DD with underlying splice site mutations of the LAMP2 gene in order to rescue the full-length mRNA. Moreover, our report of a mild phenotype complements the DD spectrum, which is of great importance for a rare disease suspected to be underdiagnosed.

摘要

丹侬病(DD)是一种罕见的X连锁多系统疾病,由LAMP2基因突变引起,其特征为智力残疾、骨骼肌病和心肌病。生存时间严重缩短。与通常的病程不同,我们报告了一个家族,尽管有两个潜在的有害LAMP2突变,但该家族的DD表型异常轻微。通过RNA测序分析,我们发现一个c.65-2A>G剪接位点突变导致在肌肉组织中产生四种不同的转录本,包括全长mRNA,但在白细胞中不产生。我们通过免疫组织化学和免疫印迹证实了我们的结果,显示仅在肌肉中检测到LAMP2蛋白。第二个突变(c.586A>T,p.T196S)以前报道其临床意义不确定。然而,在我们的患者中,这两个突变似乎都没有足够高的功能影响来导致严重的表型。总体而言,我们的研究表明,可变剪接是DD中的一种潜在机制,其LAMP2基因存在潜在的剪接位点突变以挽救全长mRNA。此外,我们关于轻度表型的报告补充了DD谱,这对于一种疑似诊断不足的罕见疾病非常重要。

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