Byrne Dominic P, London James A, Eyers Patrick A, Yates Edwin A, Cartmell Alan
Department of Biochemistry and Systems Biology, Institute of Systems, Molecular and Integrative Biology, Biosciences Building, Crown Street, University of Liverpool, Liverpool L69 7ZB, U.K.
Biochem J. 2021 Feb 26;478(4):735-748. doi: 10.1042/BCJ20200952.
Sulfated carbohydrate metabolism is a fundamental process, which occurs in all domains of life. Carbohydrate sulfatases are enzymes that remove sulfate groups from carbohydrates and are essential to the depolymerisation of complex polysaccharides. Despite their biological importance, carbohydrate sulfatases are poorly studied and challenges remain in accurately assessing the enzymatic activity, specificity and kinetic parameters. Most notably, the separation of desulfated products from sulfated substrates is currently a time-consuming process. In this paper, we describe the development of rapid capillary electrophoresis coupled to substrate fluorescence detection as a high-throughput and facile means of analysing carbohydrate sulfatase activity. The approach has utility for the determination of both kinetic and inhibition parameters and is based on existing microfluidic technology coupled to a new synthetic fluorescent 6S-GlcNAc carbohydrate substrate. Furthermore, we compare this technique, in terms of both time and resources, to high-performance anion exchange chromatography and NMR-based methods, which are the two current 'gold standards' for enzymatic carbohydrate sulfation analysis. Our study clearly demonstrates the advantages of mobility shift assays for the quantification of near real-time carbohydrate desulfation by purified sulfatases, and will support the search for small molecule inhibitors of these disease-associated enzymes.
硫酸化碳水化合物代谢是一个基本过程,发生在生命的所有领域。碳水化合物硫酸酯酶是从碳水化合物中去除硫酸基团的酶,对复杂多糖的解聚至关重要。尽管它们具有生物学重要性,但碳水化合物硫酸酯酶的研究较少,准确评估其酶活性、特异性和动力学参数仍然存在挑战。最值得注意的是,目前将脱硫产物与硫酸化底物分离是一个耗时的过程。在本文中,我们描述了快速毛细管电泳与底物荧光检测相结合的方法,作为一种高通量且简便的分析碳水化合物硫酸酯酶活性的手段。该方法可用于测定动力学和抑制参数,基于现有的微流控技术与一种新型合成荧光6S-GlcNAc碳水化合物底物。此外,我们在时间和资源方面将该技术与高效阴离子交换色谱法和基于核磁共振的方法进行了比较,这两种方法是目前酶促碳水化合物硫酸化分析的两个“金标准”。我们的研究清楚地证明了迁移率变化分析在通过纯化的硫酸酯酶定量近实时碳水化合物脱硫方面的优势,并将有助于寻找这些与疾病相关酶的小分子抑制剂。