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Structural characterization of PEGylated rHuG-CSF and location of PEG attachment sites.

机译:PEG化的rHuG-CSF的结构表征和PEG附着位点的位置。

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摘要

Mass spectrometry structural characterization is an essential tool in validating the quality of PEG-rHu-proteins. However, in either case top-down or bottom-up fashion, the interference of high intensity PEG signals on MS detection or detrimental influence of PEG on protein structure, leads to incomplete structural characterization. We propose here a method that permits complete and reliable structural characterization of PEGylated recombinant human granulocyte-colony stimulating factor (rHuG-CSF). The approach includes on-column 2-methoxy-4,5-dihydro-1H-imidazole derivatization of digested PEG rHuG-CSF and subsequent LC/MS investigation. By comparing the LC/MS retention of derivatized and underivatized digested PEG rHuG-CSF, location of the PEG attachment within rHuG-CSF could be deduced. Besides, the protein sequence coverage and position of the disulfide bridges was fully deducible from the MS data interpretation. Additionally, ultra performance liquid chromatography-mass spectrometry-to-the-E (UPLC-MS(E)) was introduced for analysis of label-free digested PEG rHuG-CSF here to enable high resolution and mass accuracy of MS detection and facilitate deep structural insights of peptides.
机译:质谱结构表征是验证PEG-rHu蛋白质量的重要工具。但是,无论是自上而下还是自下而上的方式,高强度PEG信号对MS检测的干扰或PEG对蛋白质结构的有害影响都会导致结构表征不完整。我们在这里提出一种方法,该方法可以对PEG化的重组人粒细胞集落刺激因子(rHuG-CSF)进行完整而可靠的结构表征。该方法包括将消化后的PEG rHuG-CSF进行柱上2-甲氧基-4,5-二氢-1H-咪唑的衍生化,然后进行LC / MS研究。通过比较衍生化和未衍生化的消化后的PEG rHuG-CSF的LC / MS保留值,可以推断出PEG连接在rHuG-CSF中的位置。此外,蛋白质序列的覆盖范围和二硫键的位置可以从质谱数据解释中完全推导出来。此外,在此引入了超高效液相色谱-质谱联用(UPLC-MS(E))来分析无标记的消化后的PEG rHuG-CSF,以实现高分辨率和高质量的MS检测,并促进深度检测肽的结构见解。

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