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导致泰-萨克斯病的两种土耳其β-己糖胺酶突变的特征分析。

Characterization of two Turkish beta-hexosaminidase mutations causing Tay-Sachs disease.

作者信息

Ozkara Hatice Asuman, Sandhoff Konrad

机构信息

Department of Biochemistry, Hacettepe University Faculty of Medicine, 06100 Ankara, Turkey.

出版信息

Brain Dev. 2003 Apr;25(3):191-4. doi: 10.1016/s0387-7604(02)00213-9.

Abstract

Two homoallelic mutations have recently been identified in the alpha-subunit of hexosaminidase A (EC 3.2.1.52) causing the infantile form of Tay-Sachs disease in Turkish patients. Both of these mutations, a 12 bp deletion (1096-1107 or 1098-1108 or 1099-1109) in exon 10 and a point mutation (G1362 to A, Gly454 to Asp) in exon 12, are located in the catalytic domain of the hexosaminidase alpha-chain. In order to determine whether these mutations affect the function of the catalytic domain or result in an instable protein, both mutant cDNAs were overexpressed in COS-1 cells. As judged by Western blotting, transfections of wild-type cDNA produced pro-alpha-chain and mature alpha-chain in parallel with a fivefold increase in cellular hexosaminidase activity using the synthetic substrate 4-methylumbelliferyl beta-N-acetylglucosamine 6-sulfate (MUGS). However, both mutants produced only pro-alpha-chains, although no mature form or detectable hexosaminidase activity towards two different synthetic substrates was observed. These data are consistent with the biochemical phenotype of infantile Tay-Sachs disease. We conclude that the overexpressed mutant pro-alpha-chains were misfolded and could not undergo further proteolytic processing to the active form of the enzyme in the lysosome.

摘要

最近在己糖胺酶A(EC 3.2.1.52)的α亚基中鉴定出两个纯合等位基因突变,这些突变在土耳其患者中导致婴儿型泰-萨克斯病。这两个突变,一个是外显子10中的12 bp缺失(1096 - 1107或1098 - 1108或1099 - 1109),另一个是外显子12中的点突变(G1362突变为A,甘氨酸454突变为天冬氨酸),都位于己糖胺酶α链的催化结构域。为了确定这些突变是影响催化结构域的功能还是导致蛋白质不稳定,两种突变cDNA都在COS - 1细胞中过表达。通过蛋白质免疫印迹法判断,野生型cDNA转染产生了前α链和成熟α链,同时使用合成底物4 - 甲基伞形酮基β - N - 乙酰氨基葡萄糖6 - 硫酸盐(MUGS)时细胞己糖胺酶活性增加了五倍。然而,两种突变体都只产生了前α链,尽管未观察到成熟形式或对两种不同合成底物的可检测己糖胺酶活性。这些数据与婴儿型泰-萨克斯病的生化表型一致。我们得出结论,过表达的突变前α链发生了错误折叠,无法在溶酶体中进一步进行蛋白水解加工成为酶的活性形式。

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