用底物DNP-α-GalNAc检测人血清中多种外显糖苷酶。溶酶体α- n -乙酰半乳糖胺酶的新测定方法

Simon P.J. Albracht , Erik Allon , Johannes van Pelt
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引用次数: 5

摘要

本文提出了一种测定人血清中溶酶体酶α- n -乙酰半乳糖胺酶活性的新方法。该方法使用了一种新的显色底物DNP-α-GalNAc(2,4-二硝基苯- n -乙酰-α- d -半乳糖胺),在pH 4.3和37°C下进行。这样可以连续监测释放的DNP的吸光度。该分析可以用标准分光光度计进行。与使用MU-α-GalNAc (4-methylumbelliferyl-GalNAc)终点检测的既定方法相比,本方法的比活性提高了约3倍,而该检测只需要十分之一的血清浓度。因此,该方法的灵敏度至少是MU-α-GalNAc的30倍。在pH为3.5 ~ 6.5的范围内,与DNP-α-GalNAc反应的pH依赖性,当使用4%的血清时,在pH为4附近只有一个峰。这一最佳pH值与MU-α-GalNAc的结果相似。在随附的论文(S.P.J Albracht和J. Van Pelt(2017))中,用底物DNP-α-GalNAc检测人血清中的多种外显糖苷酶。2三个α- n -乙酰半乳糖胺酶样活性在pH 5 ~ 8区域。BBA clinin . 8(2017) 90-96),该方法表明,在特殊的检测条件下,可以在人血清中发现另外三种naga样活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Multiple exo-glycosidases in human serum as detected with the substrate DNP-α-GalNAc. I. A new assay for lysosomal α-N-acetylgalactosaminidase

This paper presents a new assay to determine the activity of the lysosomal enzyme α-N-acetylgalactosaminidase (Naga, EC 3.2.1.49) in human serum. It is based on the use of a new chromogenic substrate, DNP-α-GalNAc (2,4-dinitrophenyl-N-acetyl-α-D-galactosaminide) and is performed at pH 4.3 and 37 °C. This allows continuous monitoring of the absorbance of the released DNP. The assay can be performed with a standard spectrophotometer. Compared to established methods using an endpoint assay with MU-α-GalNAc (4-methylumbelliferyl-GalNAc), the present method gives a ca. 3-fold higher specific activity, while only one tenth of the serum concentration in the assay is required. Hence, the assay is at least 30-fold more sensitive than that with MU-α-GalNAc. The pH dependence of the reaction with DNP-α-GalNAc in the pH 3.5 to 6.5 region, while using 4% serum in the assay, shows only one peak around pH 4. This pH optimum is similar to that reported with MU-α-GalNAc. In the accompanying paper (S.P.J Albracht and J. Van Pelt (2017) Multiple exo-glycosidases in human serum as detected with the substrate DNP-α-GalNAc. II. Three α-N-acetylgalactosaminidase-like activities in the pH 5 to 8 region. BBA Clin. 8 (2017) 90-96), the method is used to show that, under special assay conditions, three more Naga-like activities can be uncovered in human serum.

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