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快速鉴定泰萨二氏症患者的 HEXA 突变。

Rapid identification of HEXA mutations in Tay-Sachs patients.

机构信息

Service de Biochimie et Génétique Moléculaire, Groupe Hospitalier Cochin-Saint-Vincent-de Paul, Assistance Publique-Hôpitaux de Paris, EA3620, Université Paris Descartes, Paris, France.

出版信息

Biochem Biophys Res Commun. 2010 Feb 19;392(4):599-602. doi: 10.1016/j.bbrc.2010.01.088. Epub 2010 Jan 25.

DOI:10.1016/j.bbrc.2010.01.088
PMID:20100466
Abstract

Tay-Sachs disease (TSD) is a recessively inherited neurodegenerative disorder due to mutations in the HEXA gene resulting in a beta-hexosaminidase A (Hex A) deficiency. The purpose of this study was to characterize the molecular abnormalities in patients with infantile or later-onset forms of the disease. The complete sequencing of the 14 exons and flanking regions of the HEXA gene was performed with a unique technical condition in 10 unrelated TSD patients. Eleven mutations were identified, including five splice mutations, one insertion, two deletions and three single-base substitutions. Four mutations were novel: two splice mutations (IVS8+5G>A, IVS2+4delAGTA), one missense mutation in exon 6 (c.621T>G (p.D207E)) and one small deletion (c.1211-1212delTG) in exon 11 resulting in a premature stop codon at residue 429. The c.621T>G missense mutation was found in a patient presenting an infantile form. Its putative role in the pathogenesis of TSD is suspected as residue 207 is highly conserved in human, mouse and rat. Moreover, structural modelling predicted changes likely to affect substrate binding and catalytic activity of the enzyme. The time-saving procedure reported here could be useful for the characterization of Tay-Sachs-causing mutations, in particular in non-Ashkenazi patients mainly exhibiting rare mutations.

摘要

泰萨二氏症(TSD)是一种隐性遗传性神经退行性疾病,由于 HEXA 基因突变导致β-己糖胺酶 A(Hex A)缺乏。本研究的目的是对婴儿期或晚发型疾病患者的分子异常进行特征分析。采用独特的技术条件,对 10 名无亲缘关系的 TSD 患者的 HEXA 基因的 14 个外显子和侧翼区域进行了完整测序。共鉴定出 11 种突变,包括 5 种剪接突变、1 种插入、2 种缺失和 3 种单碱基替换。其中 4 种突变是新发现的:2 种剪接突变(IVS8+5G>A、IVS2+4delAGTA)、6 号外显子的错义突变(c.621T>G(p.D207E))和 11 号外显子的小缺失(c.1211-1212delTG),导致第 429 位残基提前出现终止密码子。c.621T>G 错义突变发生在一名表现为婴儿期发病的患者中。由于残基 207 在人类、小鼠和大鼠中高度保守,因此怀疑该突变在 TSD 的发病机制中起作用。此外,结构建模预测可能影响底物结合和酶催化活性的变化。本报告中省时的方法可能有助于鉴定引起泰萨二氏症的突变,特别是在主要表现为罕见突变的非阿什肯纳兹患者中。

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