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与致死性新生儿肌张力减退的非典型表现相关的RYR1基因首次基因组重排。

First genomic rearrangement of the RYR1 gene associated with an atypical presentation of lethal neonatal hypotonia.

作者信息

Monnier Nicole, Laquerrière Annie, Marret Stéphane, Goldenberg Alice, Marty Isabelle, Nivoche Yves, Lunardi Joël

机构信息

Laboratoire de Biochimie et Génétique Moléculaire, CHU de Grenoble, Grenoble, France.

出版信息

Neuromuscul Disord. 2009 Oct;19(10):680-4. doi: 10.1016/j.nmd.2009.07.007. Epub 2009 Sep 5.

Abstract

Neonatal hypotonia is frequently observed with a highly variable clinical presentation. Congenital myopathies that are classically characterized by the presence of structural changes of the muscle fibres such as cores, rods and aggregates have been reported to be occasionally associated with this presentation. However, the identification of the causing defect can be a challenging task in severe neonatal forms of the disease since specific structural changes might not always be present in affected newborn's muscles. The RYR1 gene encodes the skeletal muscle isoform of a calcium channel, the ryanodine receptor, and has been involved in both dominant and recessive congenital myopathies associated with structural changes and presenting with various degree of severity. Here we report the case of a child presenting at birth with a lethal form of neonatal hypotonia associated with an atypical congenital myopathy. Molecular investigations showed that the disease was caused by two novel RYR1 mutations. One of the mutations was a large-sized genomic deletion. This is the first genomic rearrangement identified into the RYR1 gene to our knowledge. This new class of mutation of the RYR1 gene will clearly have consequences for the molecular investigation of RYR1-related diseases.

摘要

新生儿肌张力减退常见,临床表现高度多样。经典的先天性肌病以肌纤维存在结构改变(如核心、杆状体和聚集体)为特征,据报道偶尔会出现这种表现。然而,对于该疾病严重新生儿形式,确定致病缺陷可能是一项具有挑战性的任务,因为受影响新生儿的肌肉中可能并不总是存在特定的结构改变。RYR1基因编码一种钙通道(兰尼碱受体)的骨骼肌异构体,并且与伴有结构改变且严重程度各异的显性和隐性先天性肌病均有关联。在此,我们报告一例出生时表现为致死性新生儿肌张力减退且伴有非典型先天性肌病的患儿病例。分子研究表明该疾病由两个新的RYR1突变引起。其中一个突变是大片段基因组缺失。据我们所知,这是首次在RYR1基因中鉴定出的基因组重排。RYR1基因的这一新类型突变显然将对RYR1相关疾病分子研究产生影响。

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