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首页> 外文期刊>Journal of mass spectrometry: JMS >Independent highly sensitive characterization of asparagine deamidation and aspartic acid isomerization by sheathless CZE-ESI-MS/MS
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Independent highly sensitive characterization of asparagine deamidation and aspartic acid isomerization by sheathless CZE-ESI-MS/MS

机译:无鞘CZE-ESI-MS / MS对天冬酰胺脱酰胺和天冬氨酸异构化的独立高灵敏度表征

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摘要

Amino acids residues are commonly submitted to various physicochemical modifications occurring at physiological pH and temperature. Post-translational modifications (PTMs) require comprehensive characterization because of their major influence on protein structure and involvement in numerous in vivo process or signaling. Mass spectrometry (MS) has gradually become an analytical tool of choice to characterize PTMs; however, some modifications are still challenging because of sample faint modification levels or difficulty to separate an intact peptide from modified counterparts before their transfer to the ionization source. Here, we report the implementation of capillary zone electrophoresis coupled to electrospray ionization tandem mass spectrometry (CZE-ESI-MS/MS) by the intermediate of a sheathless interfacing for independent and highly sensitive characterization of asparagine deamidation (deaN) and aspartic acid isomerization (isoD). CZE selectivity regarding deaN and isoD was studied extensively using different sets of synthetic peptides based on actual tryptic peptides. Results demonstrated CZE ability to separate the unmodified peptide from modified homologous exhibiting deaN, isoD or both independently with a resolution systematically superior to 1.29. Developed CZE-ESI-MS/MS method was applied for the characterization of monoclonal antibodies and complex protein mixture. Conserved CZE selectivity could be demonstrated even for complex samples, and foremost results obtained showed that CZE selectivity is similar regardless of the composition of the peptide. Separation of modified peptides prior to the MS analysis allowed to characterize and estimate modification levels of the sample independently for deaN and isoD even for peptides affected by both modifications and, as a consequence, enables to distinguish the formation of l-aspartic acid or d-aspartic acid generated from deaN. Separation based on peptide modification allowed, as supported by the ESI efficiency provided by CZE-ESI-MS/MS properties, and enabled to characterize and estimate studied PTMs with an unprecedented sensitivity and proved the relevance of implementing an electrophoretic driven separation for MS-based peptide analysis. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:氨基酸残基通常会发生在生理pH和温度下发生的各种物理化学修饰。由于翻译后修饰(PTM)对蛋白质结构的主要影响以及参与许多体内过程或信号转导,因此需要全面的表征。质谱(MS)已逐渐成为表征PTM的分析工具。然而,由于样品微弱的修饰水平或在将完整的肽转移至电离源之前难以将完整的肽与修饰的对应物分离,某些修饰仍然具有挑战性。在这里,我们报告了通过无鞘介面的中间体对电喷雾电离串联质谱(CZE-ESI-MS / MS)进行耦合的毛细管区带电泳的实现,以实现天冬酰胺脱酰胺(deaN)和天冬氨酸异构化( isoD)。关于deaN和isoD的CZE选择性已使用基于实际胰蛋白酶肽的不同组合成肽进行了广泛研究。结果表明,CZE能够将未修饰的肽与修饰的同源展示性deaN,isoD或两者分离,其分离度系统地优于1.29。所开发的CZE-ESI-MS / MS方法用于表征单克隆抗体和复杂蛋白混合物。即使对于复杂的样品,也可以证明保守的CZE选择性,并且最重要的结果表明,无论肽的组成如何,CZE选择性都是相似的。在MS分析之前分离修饰的肽可以对deaN和isoD进行特征化和估计样品的修饰水平,即使对于受两种修饰影响的肽也是如此,因此,可以区分l-天冬氨酸或d-由deaN生成的天冬氨酸。 CZE-ESI-MS / MS特性提供的ESI效率支持了基于肽修饰的分离,并能够以前所未有的灵敏度表征和评估已研究的PTM,并证明了基于电泳的分离对于基于MS的分离的相关性肽分析。版权所有(c)2016 John Wiley&Sons,Ltd.

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