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一种蛋白质糖基化位点的映射方法。

A Method for Mapping Glycosylation Sites in Proteins.

作者信息

Han Mark S, Simpson John T

机构信息

Reference Standards Laboratory, The United States Pharmacopeial Convention, Rockville, Maryland 20852, USA; and.

Compendial Development Laboratory, The United States Pharmacopeial Convention, Rockville, Maryland 20852, USA.

出版信息

J Biomol Tech. 2017 Dec;28(4):142-149. doi: 10.7171/jbt.17-2804-001. Epub 2017 Oct 3.

Abstract

The analysis of protein glycosylation by mass spectrometry (MS) has been a challenging technical problem. Quantification by HPLC of -linked glycans can be executed by the use of peptide--glycosidase F to release them from the protein, followed by attachment of a fluorescent label and subsequent fluorescence detection. Similar quantification of -linked glycans is not possible, as a result of the lack of a universal deglycosylation enzyme. Site-specific analyses by MS, such as the use of proteases to digest the glycoprotein, are difficult to use for quantification of glycans, as a result of the presence of miscleavages. Here, we present a new application of a digestion method for native proteins using resin-bound, thermally stabilized proteases. The use of this enzymatic treatment eliminates miscleavages around the site of glycosylation, thereby allowing site-specific relative quantification of glycans on glycoproteins. A native, intact human mAb was digested using a thermally stable, resin-bound trypsin to produce glycopeptides from the Fc region using a single-step protocol. A 1 mg sample was treated with 60 µg trypsin for 3 h at 70°C. After digestion, acetonitrile was added, and the mixture was centrifuged to remove the resin before analysis. Liquid chromatography (LC)/MS with hydrophilic interaction chromatography was used to analyze the glycopeptides produced. All of the glycopeptides found resulted from a single peptide (EEQYNSTYR). The LC/MS analysis of the glycopeptides is compared with that of fluorescently labeled glycans. Quantitative analysis produced a correlation coefficient of 0.87 for the linear fit between the glycopeptide and released glycan methods.

摘要

通过质谱(MS)分析蛋白质糖基化一直是一个具有挑战性的技术问题。通过高效液相色谱(HPLC)对N-连接聚糖进行定量分析,可以使用肽-N-糖苷酶F将它们从蛋白质中释放出来,然后连接荧光标签并进行后续的荧光检测。由于缺乏通用的去糖基化酶,无法对O-连接聚糖进行类似的定量分析。通过MS进行位点特异性分析,例如使用蛋白酶消化糖蛋白,由于存在错切,很难用于聚糖的定量分析。在此,我们展示了一种使用树脂结合的热稳定蛋白酶对天然蛋白质进行消化方法的新应用。这种酶处理方法消除了糖基化位点周围的错切,从而实现了对糖蛋白上聚糖的位点特异性相对定量分析。使用热稳定的树脂结合胰蛋白酶,通过单步方案对天然完整的人单克隆抗体进行消化,从Fc区域产生糖肽。将1 mg样品与60 μg胰蛋白酶在70°C下处理3小时。消化后,加入乙腈,离心混合物以去除树脂,然后进行分析。使用亲水相互作用色谱的液相色谱(LC)/MS分析产生的糖肽。发现的所有糖肽均来自单一肽段(EEQYNSTYR)。将糖肽的LC/MS分析与荧光标记聚糖的分析进行比较。定量分析得出糖肽法和释放聚糖法之间线性拟合的相关系数为0.87。

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