Rosenfeld Rakefet, Bangio Haim, Gerwig Gerrit J, Rosenberg Revital, Aloni Ronny, Cohen Yossi, Amor Yehudit, Plaschkes Inbar, Kamerling Johannis P, Maya Ruth Ben-Yakar
Procognia (Israel) Ltd, 3 Habosem Street 77610, Ashdod, Israel.
J Biochem Biophys Methods. 2007 Apr 10;70(3):415-26. doi: 10.1016/j.jbbm.2006.09.008. Epub 2006 Sep 30.
Glycosylation is the most versatile and one of the most abundant protein modifications. It has a structural role as well as diverse functional roles in many specific biological functions, including cancer development, viral and bacterial infections, and autoimmunity. The diverse roles of glycosylation in biological processes are rapidly growing areas of research, however, Glycobiology research is limited by the lack of a technology for rapid analysis of glycan composition of glycoproteins. Currently used methods for glycoanalysis are complex, typically requiring high levels of expertise and days to provide answers, and are not readily available to all researcher. We have developed a lectin array-based method, Qproteome GlycoArray kits, for rapid analysis of glycosylation profiles of glycoproteins. Glycoanalysis is performed on intact glycoproteins, requiring only 4-6 h for most analysis types. The method, demonstrated in this manuscript by several examples, is based on binding of an intact glycoprotein to the arrayed lectins, resulting in a characteristic fingerprint that is highly sensitive to changes in the protein's glycan composition. The large number of lectins, each with its specific recognition pattern, ensures high sensitivity to changes in the glycosylation pattern. A set of proprietary algorithms automatically interpret the fingerprint signals to provide a comprehensive glycan profile output.
糖基化是最具多样性且最为丰富的蛋白质修饰之一。它在许多特定生物学功能中具有结构作用以及多种功能作用,包括癌症发展、病毒和细菌感染以及自身免疫。糖基化在生物过程中的多种作用是快速发展的研究领域,然而,糖生物学研究受到缺乏一种快速分析糖蛋白聚糖组成技术的限制。目前使用的糖分析方法很复杂,通常需要高水平的专业知识且要花费数天才能得出结果,并非所有研究人员都能轻易获得。我们开发了一种基于凝集素阵列的方法,即Qproteome糖基化阵列试剂盒,用于快速分析糖蛋白的糖基化谱。糖分析是在完整糖蛋白上进行的,大多数分析类型仅需4 - 6小时。本文通过几个例子展示的该方法,基于完整糖蛋白与阵列化凝集素的结合,产生对蛋白质聚糖组成变化高度敏感的特征指纹。大量具有各自特定识别模式的凝集素确保了对糖基化模式变化的高灵敏度。一组专有算法自动解读指纹信号以提供全面的聚糖谱输出。