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一种轻度形式的半乳糖唾液酸贮积症中的突变会损害保护蛋白的二聚化,并使其变得不稳定。

A mutation in a mild form of galactosialidosis impairs dimerization of the protective protein and renders it unstable.

作者信息

Zhou X Y, Galjart N J, Willemsen R, Gillemans N, Galjaard H, d'Azzo A

机构信息

Department of Cell Biology and Genetics, Erasmus University, Rotterdam, The Netherlands.

出版信息

EMBO J. 1991 Dec;10(13):4041-8. doi: 10.1002/j.1460-2075.1991.tb04980.x.

Abstract

The lysosomal disorder galactosialidosis is caused by deficiency of the protective protein in the absence of which the activities of the enzymes beta-galactosidase and neuraminidase are reduced. Aside from its protective function towards the two glycosidases, this protein has cathepsin A-like activity. A point mutation in the protective protein gene, resulting in the substitution of Phe412 with Val in the gene product, was identified in two unrelated patients with the late infantile form of the disease. Expression in COS-1 cells of a protective protein cDNA with the base substitution resulted in the synthesis of a mutant protein that lacks cathepsin A-like activity. The newly made mutant precursor was shown to be partially retained in the endoplasmic reticulum. Only a fraction is transported to the lysosomes where it is degraded soon after proteolytic processing into the mature two-chain form. Since the mutant precursor, contrary to the wild type protein, does not form homodimers, the dimerization process might be a condition for the proper targeting and stable conformation of the protective protein. These results clarify the mechanism underlying the combined deficiency in these patients, and give new insight into the structure-function relationship of the wild type protein.

摘要

溶酶体疾病半乳糖唾液酸贮积症是由保护性蛋白缺乏引起的,在缺乏该蛋白的情况下,β-半乳糖苷酶和神经氨酸酶的活性会降低。除了对这两种糖苷酶具有保护作用外,该蛋白还具有组织蛋白酶A样活性。在两名患有晚发性婴儿型疾病的无关患者中,发现了保护性蛋白基因中的一个点突变,该突变导致基因产物中的苯丙氨酸412被缬氨酸取代。在COS-1细胞中表达具有碱基替换的保护性蛋白cDNA,导致合成了一种缺乏组织蛋白酶A样活性的突变蛋白。新产生的突变前体被证明部分保留在内质网中。只有一小部分被转运到溶酶体,在那里它在蛋白水解加工成成熟的双链形式后很快被降解。由于与野生型蛋白相反,突变前体不形成同二聚体,二聚化过程可能是保护性蛋白正确靶向和稳定构象的一个条件。这些结果阐明了这些患者联合缺乏的潜在机制,并为野生型蛋白的结构-功能关系提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c283/453152/4516cf04260a/emboj00111-0061-a.jpg

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