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导致异染性脑白质营养不良的复杂芳基硫酸酯酶A等位基因。

Complex arylsulfatase A alleles causing metachromatic leukodystrophy.

作者信息

Kappler J, Sommerlade H J, von Figura K, Gieselmann V

机构信息

Institut für Biochemie II, Göttingen, Germany.

出版信息

Hum Mutat. 1994;4(2):119-27. doi: 10.1002/humu.1380040205.

Abstract

Metachromatic leukodystrophy is a lysosomal storage disorder caused by the deficiency of arylsulfatase A. Sequencing of the arylsulfatase A genes of a patient affected with late infantile metachromatic leukodystrophy revealed that the patient is a compound heterozygote of two alleles carrying two deleterious mutation each. One allele bears a splice donor site mutation together with two polymorphisms and an additional missense mutation (Gly122 > Ser). The splice donor site mutation and the Gly122 > Ser substitution have been described recently but on different alleles. The other allele carries two missense mutations causing a Gly154 > Asp and a Pro167 > Arg substitution. When arylsulfatase A cDNAs carrying these mutations separately or in combination were transfected into baby hamster kidney cells expression of arylsulfatase A activity could not be detected. Linkage of mutations was verified by sequencing of the parental DNAs. Biosynthesis studies performed with the patients' fibroblasts show that the enzyme carrying both mutations is synthesized in almost normal amounts but is rapidly degraded in an early biosynthetic compartment. The occurence of two disease causing mutations on the same allele is a novel phenomenon in metachromatic leukodystrophy and as far as lysosomal storage diseases are concerned have so far only been described in Fabry disease and in the complex glucocerebrosidase alleles associated with Gaucher disease.

摘要

异染性脑白质营养不良是一种由芳基硫酸酯酶A缺乏引起的溶酶体贮积病。对一名患有晚发性婴儿型异染性脑白质营养不良患者的芳基硫酸酯酶A基因进行测序发现,该患者是两个等位基因的复合杂合子,每个等位基因携带两个有害突变。一个等位基因带有一个剪接供体位点突变以及两个多态性位点和一个额外的错义突变(Gly122>Ser)。该剪接供体位点突变和Gly122>Ser替换最近已有报道,但在不同的等位基因上。另一个等位基因携带两个错义突变,导致Gly154>Asp和Pro167>Arg替换。当将携带这些突变单独或组合的芳基硫酸酯酶A cDNA转染到幼仓鼠肾细胞中时,未检测到芳基硫酸酯酶A活性的表达。通过对亲本DNA进行测序验证了突变的连锁关系。对患者成纤维细胞进行的生物合成研究表明,携带这两种突变的酶几乎以正常量合成,但在早期生物合成区室中迅速降解。在同一等位基因上出现两个致病突变在异染性脑白质营养不良中是一种新现象,就溶酶体贮积病而言,迄今为止仅在法布里病以及与戈谢病相关的复杂葡萄糖脑苷脂酶等位基因中有所描述。

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