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Capillary Electrophoresis/Mass Spectrometry of APTS-Labeled Glycans for the Identification of Unknown Glycan Species in Capillary Electrophoresis/Laser-Induced Fluorescence Systems

机译:APTS标签的聚糖的毛细管电泳/质谱分析,用于鉴定毛细管电泳/激光诱导的荧光系统中的未知聚糖种类

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摘要

The examination of protein glycosylation is of high importance, especially in the (bio)pharmaceutical sector. The analysis of protein glycosylation is conducted routinely in high performance by capillary electrophoresis with laser-induced fluorescence (CE/LIF) using 8-aminopyrene-1,3,6-trisulfonic acid (APTS)-labeled glycans. In this work we present an optimized capillary electrophoresis/time-of-flight mass spectrometry (CE/TOF-MS) methodology for these labeled glycans, which combines the high separation performance of CE with the high resolution, accuracy, and speed of TOF-MS for eased glycan identification. The system based on an acidic background electrolyte (BGE) provides a migration direction analogue to routine CE/LIF systems. Different BGE compositions, capillary dimensions, coatings, and instrumental parameters were tested to optimize the system with respect to separation efficiency and robustness. Subsequently, the CE/MS method optimized for acidic conditions was compared to an alkaline CE/MS method. Further, the mobilities of six APTS-labeled complex-type N-glycans were compared for both CE/MS methods and two standard CE/LIF approaches. For the acidic and alkaline BGE systems, the mobilities of sialylated glycans were shifted relative to nonsialylated glycans in comparison to common CE/LIF systems. However, in this study a straightforward unequivocal peak assignment was achieved for all unknown glycans in a medium complex glycan mixture from a fusion protein.
机译:蛋白质糖基化的检查非常重要,尤其是在(生物)制药领域。使用8-氨基with-1,3,6-三磺酸(APTS)标记的聚糖,通过毛细管电泳和激光诱导的荧光(CE / LIF),以常规方式对蛋白质糖基化进行高效分析。在这项工作中,我们为这些标记的聚糖提供了一种优化的毛细管电泳/飞行时间质谱(CE / TOF-MS)方法,该方法结合了CE的高分离性能与TOF-的高分辨率,准确性和速度。 MS用于简化聚糖鉴定。基于酸性背景电解质(BGE)的系统提供了与常规CE / LIF系统类似的迁移方向。测试了不同的BGE成分,毛细管尺寸,涂层和仪器参数,以优化系统的分离效率和耐用性。随后,将针对酸性条件优化的CE / MS方法与碱性CE / MS方法进行了比较。此外,对于CE / MS方法和两种标准CE / LIF方法,对6种APTS标记的复杂型N聚糖的迁移率进行了比较。对于酸性和碱性BGE系统,与普通的CE / LIF系统相比,唾液酸化聚糖的迁移率相对于非唾液酸化聚糖有所改变。然而,在这项研究中,在融合蛋白的中等复杂聚糖混合物中,所有未知聚糖均实现了直接明确的峰分配。

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