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一种新的天冬氨酰葡糖胺尿症突变影响天冬氨酰葡糖胺酶的转运。

A novel aspartylglucosaminuria mutation affects translocation of aspartylglucosaminidase.

作者信息

Saarela Jani, von Schantz Carina, Peltonen Leena, Jalanko Anu

机构信息

Department of Molecular Medicine, National Public Health Institute, University of Helsinki, Helsinki, Finland.

出版信息

Hum Mutat. 2004 Oct;24(4):350-1. doi: 10.1002/humu.9276.

Abstract

The AGA gene is mutated in patients with aspartylglucosaminuria (AGU), a lysosomal storage disease enriched in the Finnish population. The disease mechanism of AGU and the biochemistry and cell biology of the lysosomal aspartylglucosaminidase (AGA) enzyme are well characterized. Here, we have investigated a novel AGU mutation found in a Finnish patient. The mutation was detected as a compound heterozygote with the Finnish major mutation in the other allele. The novel point mutation, c.44T>G, causes the L15R amino acid substitution in the signal sequence of the AGA enzyme. The mutated AGA enzyme was here analyzed by over expression in BHK and COS-1 cells. The L15R AGA protein was only faintly detectable by immunofluorescence analysis and observed in the endoplasmic reticulum. Metabolic labeling and immunoprecipitation revealed only a small amount of AGA polypeptides but the specific activity of the mutant enzyme was surprisingly high, 37% of the wild type. The amino acid substitution probably affects translocation of AGA polypeptides by altering a critical hydrophobic core structure of the signal sequence. It appears that the small amounts of active enzyme are not able to reach the lysosomes thus explaining the development of AGU disease in the patient.

摘要

天冬氨酰葡糖胺尿症(AGU)患者的AGA基因发生突变,AGU是一种在芬兰人群中高发的溶酶体贮积病。AGU的发病机制以及溶酶体天冬氨酰葡糖胺酶(AGA)的生物化学和细胞生物学特性已得到充分表征。在此,我们研究了一名芬兰患者中发现的一种新型AGU突变。该突变被检测为与另一个等位基因中的芬兰主要突变构成的复合杂合子。新的点突变c.44T>G导致AGA酶信号序列中的L15R氨基酸替换。在此通过在BHK和COS-1细胞中过表达来分析突变的AGA酶。通过免疫荧光分析仅能微弱检测到L15R AGA蛋白,且在内质网中观察到该蛋白。代谢标记和免疫沉淀仅显示少量AGA多肽,但突变酶的比活性出奇地高,为野生型的37%。氨基酸替换可能通过改变信号序列的关键疏水核心结构来影响AGA多肽的转运。似乎少量的活性酶无法到达溶酶体,从而解释了该患者AGU疾病的发生。

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