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采用串联质谱法检测黏多糖贮积症 III 型(Sanfilippo 综合征)A、B、C 和 D 型的新底物和酶分析。

New substrates and enzyme assays for the detection of mucopolysaccharidosis III (Sanfilippo Syndrome) types A, B, C, and D by tandem mass spectrometry.

机构信息

Department of Chemistry, Bagley Hall, University of Washington, Box 351700, Seattle, Washington 98195-1700, USA.

出版信息

Bioconjug Chem. 2012 Mar 21;23(3):557-64. doi: 10.1021/bc200609x. Epub 2012 Mar 9.

Abstract

The clinical phenotype of Sanfilippo Syndrome is caused by one of four enzyme deficiencies that are associated with a defect in mucopolysaccharide metabolism. The four subtypes (A, B, C, and D) are each caused by an enzyme deficiency involved in the degradation of heparan sulfate. We have developed a highly efficient synthesis of the substrates and internal standards required for the enzymatic assay of each of the four enzymes. The synthesis of the substrates involves chemical modification of a common intermediate. The substrates and internal standards allow the measurement of the enzymes relevant to heparan N-sulfatase (type A); N-acetyl-α-glucosaminidase (type B); acetyl-CoA:α-glucosamide N-acetyltransferase (type C); and N-acetylglucosamine 6-sulfatase (type D). The internal standards are similar to the substrates and allow for the accurate quantification of the enzyme assays using tandem mass spectrometry. The synthetic substrates incorporate a coumarin moiety and can also be used in fluorometric enzyme assays. We confirm that all four substrates can detect the appropriate Sanfilippo Syndrome in fibroblast lysates, and the measured enzyme activities are distinctly lower by a factor of 10 when compared to fibroblast lysates from unaffected persons.

摘要

黏多糖贮积症四型的临床表型是由四种与黏多糖代谢缺陷相关的酶缺乏引起的。这四种亚型(A、B、C 和 D)分别由涉及硫酸乙酰肝素降解的酶缺乏引起。我们已经开发出了一种非常有效的方法,可以合成每种酶的酶测定所需的底物和内标。底物的合成涉及到对共同中间产物的化学修饰。这些底物和内标允许测量与硫酸乙酰肝素 N- 硫酸酯酶(A 型);N- 乙酰 -α- 葡糖胺酶(B 型);乙酰辅酶 A:α- 葡糖酰胺 N- 乙酰基转移酶(C 型);和 N- 乙酰葡萄糖胺 6- 硫酸酯酶(D 型)相关的酶。内标与底物相似,可用于串联质谱法准确定量酶测定。合成的底物含有香豆素部分,也可用于荧光酶测定。我们证实,所有四种底物都可以检测到纤维母细胞裂解物中的适当黏多糖贮积症四型,并且与未受影响的纤维母细胞裂解物相比,酶活性明显降低了 10 倍。

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