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大疱性表皮松解症:网蛋白基因中的新型和从头出现的过早终止密码子及缺失突变预示迟发性肌营养不良。

Epidermolysis bullosa: novel and de novo premature termination codon and deletion mutations in the plectin gene predict late-onset muscular dystrophy.

作者信息

Rouan F, Pulkkinen L, Meneguzzi G, Laforgia S, Hyde P, Kim D U, Richard G, Uitto J

机构信息

Departments of Dermatology and Cutaneous Biology, and Biochemistry and Molecular Pharmacology, and Jefferson Institute of Molecular Medicine, Thomas Jefferson University, Jefferson Medical College, Philadelphia, PA 19107, USA.

出版信息

J Invest Dermatol. 2000 Feb;114(2):381-7. doi: 10.1046/j.1523-1747.2000.00880.x.

Abstract

Epidermolysis bullosa (EB) with late-onset muscular dystrophy (EB-MD) is a hemidesmosomal variant of EB due to mutations in the plectin gene (PLEC1). The age of onset of muscle involvement has been noted to vary from infancy to the fourth decade of life. Immunofluorescence of the patients' skin and muscle biopsies is usually negative for staining with antibodies recognizing plectin, a large cytoskeleton-associated anchorage protein. In this study we report novel plectin mutations in two families with EB. In both families, the proband was a newborn with neonatal blistering with no evidence for muscle weakness as yet. Peripheral blood DNA was isolated and examined by heteroduplex scanning strategy, protein truncation test (PTT), and/or direct sequencing of the plectin gene. One of the probands was compound heterozygote for nonsense mutations E2005X/K4460X, and the proband in the second family was compound heterozygote for deletion mutations 5083delG/2745-9del21, the latter mutation extending from -9 to +12 at the intron 22/exon 23 border. The mutations K4460X and 5083delG were not present in either one of the parents, thus being de novo events. In both cases, nonpaternity was excluded by microsatellite marker analysis. The stop codon mutations are predicted to result in the synthesis of a truncated protein lacking the carboxy-terminal globular domain of the protein and possibly causing nonsense-mediated decay of the corresponding mRNA. The 2745-9del21 deletion mutation abolishes the splice site at the intron 22/exon 23 junction, predicting abnormal splicing events. Because plectin deficiency is associated with muscular dystrophy, molecular diagnostics of the plectin gene provides prognostic value in evaluation of these patients who appear to be at risk to develop muscular dystrophy.

摘要

伴迟发性肌营养不良的大疱性表皮松解症(EB-MD)是一种由于斑珠蛋白基因(PLEC1)突变导致的EB半桥粒变异型。肌肉受累的发病年龄从婴儿期到生命的第四个十年不等。患者皮肤和肌肉活检的免疫荧光通常对识别斑珠蛋白(一种与细胞骨架相关的大型锚定蛋白)的抗体染色呈阴性。在本研究中,我们报告了两个EB家族中的新型斑珠蛋白突变。在这两个家族中,先证者均为新生儿,有新生儿水疱形成,目前尚无肌肉无力的证据。分离外周血DNA,并通过异源双链扫描策略、蛋白质截短试验(PTT)和/或斑珠蛋白基因的直接测序进行检测。其中一名先证者是无义突变E2005X/K4460X的复合杂合子,第二个家族的先证者是缺失突变5083delG/2745-9del21的复合杂合子,后一种突变从内含子22/外显子23边界的-9延伸至+12。突变K4460X和5083delG在父母双方中均未出现,因此是新生事件。在这两种情况下,通过微卫星标记分析排除了非父系关系。预计终止密码子突变会导致合成一种缺乏该蛋白羧基末端球状结构域的截短蛋白,并可能导致相应mRNA的无义介导衰变。2745-9del21缺失突变消除了内含子22/外显子23连接处的剪接位点,预测会出现异常剪接事件。由于斑珠蛋白缺乏与肌营养不良相关,斑珠蛋白基因的分子诊断在评估这些似乎有患肌营养不良风险的患者时具有预后价值。

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