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A Rapid and Sensitive Method for Measuring N-Acetylglucosaminidase Activity in Cultured Cells

机译:测量培养细胞中N-乙酰氨基葡萄糖苷酶活性的快速灵敏方法

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摘要

A rapid and sensitive method to quantitatively assess N-acetylglucosaminidase (NAG) activity in cultured cells is highly desirable for both basic research and clinical studies. NAG activity is deficient in cells from patients with Mucopolysaccharidosis type IIIB (MPS IIIB) due to mutations in NAGLU, the gene that encodes NAG. Currently available techniques for measuring NAG activity in patient-derived cell lines include chromogenic and fluorogenic assays and provide a biochemical method for the diagnosis of MPS IIIB. However, standard protocols require large amounts of cells, cell disruption by sonication or freeze-thawing, and normalization to the cellular protein content, resulting in an error-prone procedure that is material- and time-consuming and that produces highly variable results. Here we report a new procedure for measuring NAG activity in cultured cells. This procedure is based on the use of the fluorogenic NAG substrate, 4-Methylumbelliferyl-2-acetamido-2-deoxy-alpha-D-glucopyranoside (MUG), in a one-step cell assay that does not require cell disruption or post-assay normalization and that employs a low number of cells in 96-well plate format. We show that the NAG one-step cell assay greatly discriminates between wild-type and MPS IIIB patient-derived fibroblasts, thus providing a rapid method for the detection of deficiencies in NAG activity. We also show that the assay is sensitive to changes in NAG activity due to increases in NAGLU expression achieved by either overexpressing the transcription factor EB (TFEB), a master regulator of lysosomal function, or by inducing TFEB activation chemically. Because of its small format, rapidity, sensitivity and reproducibility, the NAG one-step cell assay is suitable for multiple procedures, including the high-throughput screening of chemical libraries to identify modulators of NAG expression, folding and activity, and the investigation of candidate molecules and constructs for applications in enzyme replacement therapy, gene therapy, and combination therapies.
机译:对于基础研究和临床研究都非常需要一种快速灵敏的方法来定量评估培养细胞中的N-乙酰氨基葡萄糖苷酶(NAG)活性。由于编码NAG的基因NAGLU中的突变,来自IIIB型粘多糖贮积症(MPS IIIB)患者的细胞中NAG活性不足。用于测量患者来源细胞系中NAG活性的当前可用技术包括生色和荧光检测,并提供了诊断MPS IIIB的生化方法。但是,标准方案需要大量细胞,需要通过超声处理或冻融来破坏细胞,并对细胞蛋白质含量进行归一化处理,从而导致易于出错的过程,该过程既耗时又费时,并且产生高度可变的结果。在这里,我们报告了一种测量培养细胞中NAG活性的新程序。此程序基于荧光NAG底物的使用,无需一步步进行细胞分析或后处理,即可使用一步法进行的细胞分析,方法是使用荧光NAG底物4-甲基伞形基-2-乙酰氨基-2-脱氧-α-D-吡喃葡萄糖苷(MUG)。检测归一化,并采用96孔板形式的少量细胞。我们显示,NAG一步细胞测定法可极大地区分野生型和MPS IIIB患者来源的成纤维细胞,从而为检测NAG活性缺陷提供了一种快速方法。我们还显示,由于过表达转录因子EB(TFEB),溶酶体功能的主调节剂或通过化学诱导TFEB活化而实现的NAGLU表达增加,该测定法对NAG活性的变化敏感。由于其格式小,速度快,灵敏度高和可重复性好,NAG一步细胞测定适用于多种程序,包括高通量筛选化学文库以鉴定NAG表达,折叠和活性的调节剂以及研究候选基因用于酶替代疗法,基因疗法和联合疗法的分子和构建体。

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