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首页> 外文期刊>Journal of mass spectrometry: JMS >Observation of the multiple halogenation of peptides in the electrospray ionization source
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Observation of the multiple halogenation of peptides in the electrospray ionization source

机译:观察电喷雾电离源中肽的多次卤化

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摘要

The chlorination of peptides and proteins is an important posttranslational modification, which is a physiological signature of an enzyme myeloperoxidase and can serve as a potential biomarker of some diseases (Parkinson's disease, Alzheimer's disease, etc.). The quantification of the chlorinated peptides has been very challenging in part due to their low levels and artifacts associated with sample preparation. One of the most convenient and promising methods to detect and investigate the chlorinated peptides in the biological samples is the electrospray ionization (ESI) mass spectrometry coupled to the fragmentation techniques (collision-induced dissociation and electron capture dissociation/electron transfer dissociation). We have shown that if the chlorine anions are present in the solution, then the peptide can undergo the chlorination during the ESI ionization. The effect was found to depend on the values of electric potentials of metal parts of the ESI interface. It was found that the grounding of ESI syringe results in the formation of an additional electric loop leading to the electrolytic production of Cl-2 and as a consequence the hypochlorous acid inside the ESI needle. Hypochlorous acid reacts with amino groups of peptides and proteins producing chloramine or causing the protein cleavage. In the paper, it is shown on the example of the solution of the several peptides in the presence of HCl that by manipulating the ESI syringe potential, it is possible to create complexes with up to five Cl atoms for sample peptides when the ESI is operated in the positive mode. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:肽和蛋白质的氯化是重要的翻译后修饰,是髓过氧化物酶的生理特征,可以作为某些疾病(帕金森氏病,阿尔茨海默氏病等)的潜在生物标志物。氯化肽的定量分析非常具有挑战性,部分原因是其含量低和与样品制备相关的伪影。检测和研究生物样品中氯化肽的最便捷,最有前途的方法之一是电喷雾电离(ESI)质谱与碎裂技术(碰撞诱导解离和电子捕获解离/电子转移解离)相结合。我们已经表明,如果溶液中存在氯阴离子,则肽在ESI电离过程中会发生氯化反应。发现该效果取决于ESI界面的金属部件的电势值。已经发现,ESI注射器的接地导致形成额外的电回路,从而导致电解生成Cl-2,并因此导致ESI针内的次氯酸。次氯酸与肽和蛋白质的氨基反应生成氯胺或引起蛋白质裂解。在本文中,显示了在HCl存在下几种肽溶液的实例,通过控制ESI注射器的电势,当操作ESI时,可以为样品肽产生最多五个Cl原子的络合物在积极模式。版权所有(C)2015 John Wiley&Sons,Ltd.

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