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无标记定量:一种新的糖蛋白质组学方法。

Label-free quantitation: a new glycoproteomics approach.

作者信息

Rebecchi Kathryn R, Wenke Jamie L, Go Eden P, Desaire Heather

机构信息

Department of Chemistry, University of Kansas, Lawrence, Kansas 66045, USA.

出版信息

J Am Soc Mass Spectrom. 2009 Jun;20(6):1048-59. doi: 10.1016/j.jasms.2009.01.013. Epub 2009 Mar 9.

Abstract

We demonstrate herein a method for quantifying glycosylation changes on glycoproteins. This novel method uses MS data of characterized glycopeptides to analyze glycosylation profiles, and several quality control tests were done to demonstrate that the method is reproducible, robust, applicable to different types of glycoproteins, and tolerant of instrumental variability during ionization of the analytes. This method is unique in that it is the first label-free quantitative method specifically designed for glycopeptide analysis. It can be used to monitor changes in glycosylation in a glycosylation site-specific manner on a single glycoprotein, or it can be used to quantify glycosylation in a glycoprotein mixture. During mixture analysis, the method can discriminate between changes in glycosylation of a given protein, and changes in the glycoprotein's concentration in the mixture. This method is useful for quantitative analyses in biochemical studies of glycoproteins, where changes in glycosylation composition can be linked to functional differences; it could also be implemented in the pharmaceutical industry, where glycosylation profiles of glycoprotein-based therapeutics must be quantified. Finally, quantification of glycopeptides is an important aspect of glycopeptide-based biomarker discovery, and our quantitative approach could be a valuable asset to this field as well, provided the compositions of the glycopeptides to be quantified are identifiable using other methods.

摘要

我们在此展示了一种用于定量糖蛋白糖基化变化的方法。这种新方法利用已表征糖肽的质谱数据来分析糖基化谱,并进行了多项质量控制测试,以证明该方法具有可重复性、稳健性,适用于不同类型的糖蛋白,且能耐受分析物电离过程中的仪器变异性。该方法的独特之处在于,它是首个专门为糖肽分析设计的无标记定量方法。它可用于以糖基化位点特异性方式监测单个糖蛋白的糖基化变化,也可用于定量糖蛋白混合物中的糖基化。在混合物分析过程中,该方法能够区分给定蛋白质糖基化的变化与混合物中糖蛋白浓度的变化。此方法对于糖蛋白生物化学研究中的定量分析很有用,在这类研究中糖基化组成的变化可与功能差异相关联;它也可应用于制药行业,在该行业中基于糖蛋白的治疗药物的糖基化谱必须进行定量。最后,糖肽定量是基于糖肽的生物标志物发现的一个重要方面,并且我们的定量方法对于该领域也可能是一项有价值的资产,前提是待定量糖肽的组成可以用其他方法鉴定。

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