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通过平面凝胶电泳技术和基质辅助激光解吸/电离线性飞行时间质谱法对用于兴奋剂检测的完整重组人促红细胞生成素进行表征。

Characterisation of intact recombinant human erythropoietins applied in doping by means of planar gel electrophoretic techniques and matrix-assisted laser desorption/ionisation linear time-of-flight mass spectrometry.

作者信息

Stübiger Gerald, Marchetti Martina, Nagano Marietta, Reichel Christian, Gmeiner Günter, Allmaier Günter

机构信息

Institute of Chemical Technologies and Analytics, Vienna University of Technology, Getreidemarkt 9/164, A-1060 Vienna, Austria.

出版信息

Rapid Commun Mass Spectrom. 2005;19(5):728-42. doi: 10.1002/rcm.1830.

Abstract

Our experiments show that it is possible to detect different types of recombinant human erythropoietins (rhEPOs), EPO-alpha, EPO-beta and novel erythropoesis stimulating protein (NESP), based on exact molecular weight (MW) determination by matrix-assisted laser desorption/ionisation mass spectrometry (MALDI-MS) applying a high-resolution time-of-flight (TOF) mass analyser in the linear mode. Detection limits for the highly purified, intact glycoproteins were achievable in the low fmol range (25-50 fmol) using a sample preparation method applying a hydrophobic sample support (DropStop) as MALDI target surface. These results are very promising for the development of highly sensitive detection methods for a direct identification of rhEPO after enrichment from human body fluids. During our investigation we were able to differentiate EPO-alpha, EPO-beta and NESP based on distinct molecular substructures at the protein level by specific enzymatic reactions. MW determination of the intact molecules by high resolving one-dimensional sodium dodecyl sulfate /polyacrylamide gel electrophoresis (1D SDS-PAGE) and isoform separation by planar isoelectric focusing (IEF) was compared with MALDI-MS data. Migration differences between the rhEPOs were observed from gel electrophoresis, whereby MWs of 38 kDa in the case of EPO-alpha/beta and 49 kDa for NESP could be estimated. In contrast, an exact MW determination by MALDI-MS based on internal calibration revealed average MWs of 29.8 +/- 0.3 kDa for EPO-alpha/beta and 36.8 +/- 0.4 kDa for NESP. IEF separation of the intact rhEPOs revealed the presence of four to eight distinct isoforms in EPO-alpha and EPO-beta, while four isoforms, which appeared in the more acidic area of the gels, were detected by immunostaining in NESP. A direct detection of the different N- or O-glycoform pattern from rhEPOs using MALDI-MS was possible by de-sialylation of the glycan structures and after de-N-glycosylation of the intact molecules. Thereby, the main glycoforms of EPO-alpha, EPO-beta and NESP could be characterised based on their N-glycan composition. A microheterogeneity of the molecules based on the degree of sialylation of the O-glycan was observable directly from the de-N-glycosylated protein.

摘要

我们的实验表明,基于基质辅助激光解吸/电离质谱(MALDI-MS),采用线性模式下的高分辨率飞行时间(TOF)质量分析仪精确测定分子量(MW),能够检测不同类型的重组人促红细胞生成素(rhEPOs),即EPO-α、EPO-β和新型促红细胞生成刺激蛋白(NESP)。使用一种将疏水性样品支持物(DropStop)作为MALDI靶表面的样品制备方法,对于高度纯化的完整糖蛋白,检测限可达到低飞摩尔范围(25 - 50飞摩尔)。这些结果对于开发用于从人体体液中富集后直接鉴定rhEPO的高灵敏度检测方法非常有前景。在我们的研究过程中,通过特定的酶促反应,我们能够在蛋白质水平上基于不同的分子亚结构区分EPO-α、EPO-β和NESP。将通过高分辨率一维十二烷基硫酸钠/聚丙烯酰胺凝胶电泳(1D SDS-PAGE)对完整分子进行的分子量测定以及通过平面等电聚焦(IEF)进行的异构体分离与MALDI-MS数据进行了比较。从凝胶电泳中观察到了rhEPOs之间的迁移差异,据此可以估计EPO-α/β的分子量为38 kDa,NESP的分子量为49 kDa。相比之下,基于内部校准的MALDI-MS精确分子量测定显示,EPO-α/β的平均分子量为29.8±0.3 kDa,NESP的平均分子量为3..8±0.4 kDa。对完整rhEPOs进行IEF分离显示,EPO-α和EPO-β中存在四到八种不同的异构体,而通过免疫染色在NESP中检测到四种出现在凝胶酸性更强区域的异构体。通过对聚糖结构进行去唾液酸化以及对完整分子进行去N-糖基化后,使用MALDI-MS可以直接检测rhEPOs中不同的N-或O-糖型模式。由此,可以根据其N-聚糖组成对EPO-α、EPO-β和NESP的主要糖型进行表征。从去N-糖基化的蛋白质中可以直接观察到基于O-聚糖唾液酸化程度的分子微不均一性。

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