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通过毛细管电泳-电喷雾-飞行时间质谱联用技术结合聚糖和完整蛋白质分析对促红细胞生成素进行糖型表征。

Glycoform characterization of erythropoietin combining glycan and intact protein analysis by capillary electrophoresis - electrospray - time-of-flight mass spectrometry.

作者信息

Balaguer Elvira, Demelbauer Uwe, Pelzing Matthias, Sanz-Nebot Victoria, Barbosa José, Neusüss Christian

机构信息

Analytical Chemistry Department, University of Barcelona, Spain.

出版信息

Electrophoresis. 2006 Jul;27(13):2638-50. doi: 10.1002/elps.200600075.

Abstract

Glycosylation of recombinant human erythropoietin (rHuEPO) is a post-translational process that alters biological activity, solubility and lifetime of the glycoprotein in blood, and strongly depends on the type of cell and the cell culture conditions. A fast and simple method providing extensive carbohydrate information about the glycans present in rHuEPO and other glycoproteins is needed in order to improve current methods in drug development or product quality control. Here, an improved method for intact rHuEPO glycoform characterization by CZE-ESI-TOF MS has been developed using a novel capillary coating and compared to a previous study. Both methods allow a fast separation in combination with accurate mass characterization of the single protein isoforms. The novel dynamic coating provides a separation at an EOF close to zero, enabling better separation. This results in an improved mass spectrometric resolution and the detection of minor isoforms. In order to assign an unequivocal carbohydrate composition to every intact glycoform, a CZE-ESI-MS separation method for enzymatically released underivatized N-glycans has been developed. The TOF MS allows the correct identification of the glycans due to its high mass accuracy and resolution. Therefore, glycan modifications such as acetylation, oxidation, sulfation and even the exchange of OH by NH(2) are successfully characterized. Information of the protein-backbone molecular mass has been combined with results from peptide analysis (revealing information about O-glycosylation) and from the glycan analysis, including the detection of as yet undescribed glycans containing four antennae and five sialic acids. This allows an unequivocal assignment of an overall glycosylation composition to the molecular masses obtained for the intact rHuEPO glycoforms.

摘要

重组人促红细胞生成素(rHuEPO)的糖基化是一种翻译后修饰过程,它会改变糖蛋白在血液中的生物活性、溶解度和半衰期,并且在很大程度上取决于细胞类型和细胞培养条件。为了改进药物开发或产品质量控制中的现有方法,需要一种快速简便的方法来提供有关rHuEPO和其他糖蛋白中聚糖的广泛碳水化合物信息。在此,我们开发了一种使用新型毛细管涂层通过CZE-ESI-TOF MS对完整rHuEPO糖型进行表征的改进方法,并与先前的研究进行了比较。两种方法都能实现快速分离,并结合对单个蛋白质异构体的精确质量表征。这种新型动态涂层在接近零的电渗流(EOF)下实现分离,从而实现更好的分离效果。这导致质谱分辨率提高,并能检测到次要异构体。为了明确为每种完整糖型确定碳水化合物组成,我们开发了一种用于酶解释放的未衍生化N-聚糖的CZE-ESI-MS分离方法。飞行时间质谱(TOF MS)因其高质量准确性和分辨率,能够正确鉴定聚糖。因此,诸如乙酰化、氧化、硫酸化甚至OH被NH(2)取代等聚糖修饰都能被成功表征。蛋白质主链分子量信息已与肽分析结果(揭示O-糖基化信息)以及聚糖分析结果相结合,包括检测到含有四个天线和五个唾液酸的尚未描述的聚糖。这使得能够明确为完整rHuEPO糖型获得的分子量确定整体糖基化组成。

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