Sandoz GmbH, Biochemiestrasse 10, 6250, Kundl, Austria.
Anal Bioanal Chem. 2013 Aug;405(21):6667-74. doi: 10.1007/s00216-013-7138-0. Epub 2013 Jul 6.
Protein therapeutics have emerged as a major new class of pharmaceuticals. One important shelf-life-limiting factor of biopharmaceuticals is methionine oxidation, and therefore, it is important that analytical methods are able to thoroughly characterize all possible oxidized variants. Here, we present a fast and sensitive method to perform online methionine oxidation site assignment using granulocyte colony-stimulating factor (filgrastim) as a model. The method is based on top-down MS using the all-ion fragmentation mode of the Exactive benchtop mass spectrometer. Conditions that provide information on the intact mass of the protein as well as on fragment ions that allow unambiguous site assignment of methionine oxidation in filgrastim variants as low as 0.12% of total peak area in a chromatographic time scale were identified. Using this method, we performed methionine oxidation site assignment in H2O2-stressed filgrastim and in filgrastim which was stored at intended conditions, respectively. We show that the relative abundance of oxidation species observed in filgrastim stored under intended conditions differs strikingly from the oxidized species observed after H2O2 stress. Additionally, we report an oxidized filgrastim variant that has not been previously described in the literature.
蛋白质疗法已成为一类主要的新型药物。生物制药的一个重要的保质期限制因素是蛋氨酸氧化,因此,分析方法能够彻底表征所有可能的氧化变体非常重要。在这里,我们提出了一种快速灵敏的方法,使用粒细胞集落刺激因子(filgrastim)作为模型,在线进行蛋氨酸氧化位点的分配。该方法基于使用 Exactive 台式质谱仪的全离子碎裂模式的自上而下 MS。确定了提供有关蛋白质完整质量以及允许在色谱时间尺度内明确分配 filgrastim 变体中蛋氨酸氧化的片段离子的信息的条件,这些条件下,总峰面积的 0.12%即可进行分析。使用该方法,我们分别在 H2O2 应激的 filgrastim 和在预期条件下储存的 filgrastim 中进行了蛋氨酸氧化位点的分配。我们表明,在预期条件下储存的 filgrastim 中观察到的氧化物质的相对丰度与 H2O2 应激后观察到的氧化物质明显不同。此外,我们还报告了一种以前在文献中未描述过的氧化 filgrastim 变体。