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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Rapid Sample Preparation Methodology for Plant N-Glycan Analysis Using Acid-Stable PNGase H+
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Rapid Sample Preparation Methodology for Plant N-Glycan Analysis Using Acid-Stable PNGase H+

机译:使用酸稳定的PNGase H +进行植物N-聚糖分析的快速样品前处理方法

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摘要

The quantification of potentially allergenic carbohydrate motifs of plant and insect glycoproteins is increasingly important in biotechnological and agricultural applications as a result of the use of insect cell-based expression systems and transgenic plants. The need to analyze N-glycan moieties in a highly parallel manner inspired us to develop a quick N-glycan analysis method based on a recently discovered bacterial protein N-glycanase (PNGase H+). In contrast to the traditionally used PNGase A, which is isolated from almond seeds and only releases N-glycans from proteolytically derived glycopeptides, the herein implemented PNGase H+ allows for the release of N-glycans directly from the glycoprotein samples. Because PNGase is highly active under acidic conditions, the consecutive fluorescence labeling step using 2-aminobenzamide (2AB) can be directly performed in the same mixture used for the enzymatic deglycosylation step. All sample handling and incubation steps can be performed in less than 4 h and are compatible with microwell-plate sampling, without the need for tedious centrifugation, precipitation, or sample-transfer steps. The versatility of this methodology was evaluated by analyzing glycoproteins derived from various plant sources using ultra-performance liquid chromatography (UPLC) analysis and further demonstrated through the activity analysis of four PNGase H+ mutant variants.
机译:由于使用了基于昆虫细胞的表达系统和转基因植物,植物和昆虫糖蛋白的潜在变应性碳水化合物基序的定量在生物技术和农业应用中变得越来越重要。以高度并行的方式分析N-聚糖部分的需求启发了我们基于最近发现的细菌蛋白N-聚糖酶(PNGase H +)开发一种快速的N-聚糖分析方法。与从杏仁种子分离并且仅从蛋白水解衍生的糖肽中释放N-聚糖的传统使用的PNGase A相反,本文实施的PNGase H +允许直接从糖蛋白样品中释放N-聚糖。由于PNGase在酸性条件下具有高活性,因此使用2-氨基苯甲酰胺(2AB)进行的连续荧光标记步骤可以直接在用于酶促去糖基化步骤的同一混合物中进行。所有样品处理和孵育步骤都可以在不到4小时的时间内完成,并且与微孔板采样兼容,而无需繁琐的离心,沉淀或样品转移步骤。通过使用超高效液相色谱(UPLC)分析来自多种植物来源的糖蛋白来评估该方法的多功能性,并通过对四个PNGase H +突变体变体的活性分析进一步证明了该方法的多样性。

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