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导致黏多糖贮积症IVA表型的N-乙酰半乳糖胺-6-硫酸酯硫酸酯酶错义突变的生化与结构分析

Biochemical and structural analysis of missense mutations in N-acetylgalactosamine-6-sulfate sulfatase causing mucopolysaccharidosis IVA phenotypes.

作者信息

Sukegawa K, Nakamura H, Kato Z, Tomatsu S, Montaño A M, Fukao T, Toietta G, Tortora P, Orii T, Kondo N

机构信息

Department of Pediatrics, Gifu University School of Medicine, 40 Tsukasa-machi, Gifu 500-8705, Japan,

出版信息

Hum Mol Genet. 2000 May 22;9(9):1283-90. doi: 10.1093/hmg/9.9.1283.

Abstract

Mucopolysaccharidosis IVA (MPS IVA; OMIM#253000), a lysosomal storage disorder caused by a deficiency of N -acetylgalactosamine-6-sulfate sulfatase (GALNS), has variable clinical phenotypes. To date we have identified 65 missense mutations in the GALNS gene from MPS IVA patients, but the correlation between genotype and phenotype has remained unclear. We studied 17 missense mutations using biochemical approaches and 32 missense mutations, using structural analyses. Fifteen missense mutations and two newly engineered active site mutations (C79S, C79T) were characterized by transient expression analysis. Mutant proteins, except for C79S and C79T, were destabilized and detected as insoluble precursor forms while the C79S and C79T mutants were of a soluble mature size. Mutants found in the severe phenotype had no activity. Mutants found in the mild phenotype had a considerable residual activity (1.3-13.3% of wild-type GALNS activity). Sulfatases, including GALNS, are members of a highly conserved gene family sharing an extensive sequence homology. Thus, a tertiary structural model of human GALNS was constructed from the X-ray crystal structure of N -acetylgalacto-samine-4-sulfatase and arylsulfatase A, using homology modeling, and 32 missense mutations were investigated. Consequently, we propose that there are at least three different reasons for the severe phenotype: (i) destruction of the hydrophobic core or modification of the packing; (ii) removal of a salt bridge to destabilize the entire conformation; (iii) modification of the active site. In contrast, mild mutations were mostly located on the surface of the GALNS protein. These studies shed further light on the genotype-phenotype correlation of MPS IVA and structure-function relationship in the sulfatase family.

摘要

IVA型黏多糖贮积症(MPS IVA;OMIM#253000)是一种由N - 乙酰半乳糖胺 - 6 - 硫酸酯酶(GALNS)缺乏引起的溶酶体贮积病,具有多种临床表型。迄今为止,我们已在MPS IVA患者的GALNS基因中鉴定出65个错义突变,但基因型与表型之间的相关性仍不明确。我们使用生化方法研究了17个错义突变,并使用结构分析方法研究了32个错义突变。通过瞬时表达分析对15个错义突变和两个新设计的活性位点突变(C79S、C79T)进行了表征。除C79S和C79T外,突变蛋白不稳定,以不溶性前体形式被检测到,而C79S和C79T突变体具有可溶性成熟大小。在严重表型中发现的突变体无活性。在轻度表型中发现的突变体具有相当大的残余活性(野生型GALNS活性的1.3 - 13.3%)。包括GALNS在内的硫酸酯酶是一个高度保守的基因家族成员,具有广泛的序列同源性。因此,利用同源建模从N - 乙酰半乳糖胺 - 4 - 硫酸酯酶和芳基硫酸酯酶A的X射线晶体结构构建了人GALNS的三级结构模型,并研究了32个错义突变。因此,我们提出严重表型至少有三个不同原因:(i)疏水核心的破坏或堆积的改变;(ii)盐桥的去除使整个构象不稳定;(iii)活性位点的改变。相比之下,轻度突变大多位于GALNS蛋白的表面。这些研究进一步揭示了MPS IVA的基因型 - 表型相关性以及硫酸酯酶家族中的结构 - 功能关系。

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