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伴有单纯核内杆状体的杆状体肌病及ACTA1基因的新突变(Q139H)

Nemaline myopathy with exclusively intranuclear rods and a novel mutation in ACTA1 (Q139H).

作者信息

Koy A, Ilkovski B, Laing N, North K, Weis J, Neuen-Jacob E, Mayatepek E, Voit T

机构信息

Department of General Pediatrics, University Children's Hospital, Düsseldorf, Germany.

出版信息

Neuropediatrics. 2007 Dec;38(6):282-6. doi: 10.1055/s-2008-1065356.

DOI:10.1055/s-2008-1065356
PMID:18461503
Abstract

Nemaline myopathies (NM) are a rare group of muscle disorders, but represent one of the most common forms of congenital myopathy. The clinical picture ranges from severe muscular hypotonia often leading to death during childhood to mild forms with long life expectancy. Diagnosis is made by muscle biopsy showing characteristic sarcoplasmic and sometimes intranuclear rod bodies. So far, disease-associated mutations have been detected in six genes without any simple correlation between genotype and phenotype or histological findings. We report a patient with a phenotype typical of congenital onset nemaline myopathy and exclusively intranuclear rods. Mutation analysis revealed a new heterozygous missense mutation in exon 3 of the ACTA1 gene (Q139H). Molecular modelling predicts that substitution of Q139 for H139 alters the amino acid side chains and hydrogen bonding which may alter the nucleotide binding cleft by adding 'bulk' to the mutated molecule. Two-dimensional gel electrophoresis demonstrates that mutant actin Q139H is expressed at approximately half the level of wild-type actin in the patient's muscle. We speculate that these alterations, although not directly affecting the nuclear export signal, negatively interfere with the nuclear export of the mutated protein and thereby cause retention of mutant actin and intranuclear rod formation.

摘要

杆状体肌病(NM)是一组罕见的肌肉疾病,但却是先天性肌病最常见的形式之一。临床表现从严重的肌张力减退(常导致儿童期死亡)到预期寿命长的轻度形式不等。通过肌肉活检显示特征性的肌浆内以及有时核内的杆状体来进行诊断。到目前为止,已在六个基因中检测到与疾病相关的突变,但基因型与表型或组织学发现之间没有任何简单的相关性。我们报告了一名具有先天性起病杆状体肌病典型表型且仅有核内杆状体的患者。突变分析揭示了ACTA1基因第3外显子中的一个新的杂合错义突变(Q139H)。分子建模预测,用H139替代Q139会改变氨基酸侧链和氢键,这可能通过给突变分子增加“体积”来改变核苷酸结合裂隙。二维凝胶电泳表明,患者肌肉中突变型肌动蛋白Q139H的表达水平约为野生型肌动蛋白的一半。我们推测,这些改变虽然不直接影响核输出信号,但会对突变蛋白的核输出产生负面影响,从而导致突变型肌动蛋白的滞留和核内杆状体的形成。

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