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揭示修饰氨基酸的碎片化机制是其靶向鉴定的关键。

Unveiling the Fragmentation Mechanisms of Modified Amino Acids as the Key for Their Targeted Identification.

机构信息

Centre for Metabolomics and Bioanalysis (CEMBIO), Department of Chemistry and Biochemistry, Facultad de Farmacia, Universidad San Pablo-CEU, CEU Universities, Urbanización Montepríncipe, 28660 Boadilla del Monte, Madrid, Spain.

Department of Information Technology, Escuela Politécnica Superior, Universidad San Pablo-CEU, CEU Universities, Urbanización Montepríncipe, 28660 Boadilla del Monte, Madrid, Spain.

出版信息

Anal Chem. 2020 Apr 7;92(7):4848-4857. doi: 10.1021/acs.analchem.9b04313. Epub 2020 Mar 12.

Abstract

The alteration of modified amino acid (MAA) profiles in biological samples is related to important cellular, physiological, and pathological processes. To achieve the interpretation of their biochemical relevance, it is critical to define their whole chemical spectrum using metabolomic research works. We present a detailed in-source fragmentation (ISF) study based on the mechanisms of the major fragmentation reactions observed of diagnostic ions (DIs) generated in positive electrospray ionization for 57 amino acid standard compounds using capillary electrophoresis coupled with high-resolution mass spectrometry. The DIs presented and our in-house fragment library allowed us to establish a workflow for targeted extraction of MAAs. We present key examples showing successful findings such as the identification of -methyl-l-lysine, which provides insight into the lysine methylome. The experimental results presented prove that the use of ISF data, when combined with a thorough study of the fragmentation mechanisms, constitutes an informative source of accurate molecular identity.

摘要

生物样本中修饰氨基酸(MAA)谱的改变与重要的细胞、生理和病理过程有关。为了实现对其生化相关性的解释,使用代谢组学研究工作来定义它们的全化学谱至关重要。我们提出了一种详细的源内碎裂(ISF)研究,该研究基于在正电喷雾电离中观察到的主要碎裂反应的机制,对 57 种氨基酸标准化合物的诊断离子(DI)进行了毛细管电泳与高分辨质谱联用。所呈现的 DI 和我们的内部片段库使我们能够建立一种针对 MAAs 的靶向提取工作流程。我们提供了关键示例,展示了成功的发现,例如 -甲基-l-赖氨酸的鉴定,这为赖氨酸甲基组学提供了深入了解。所呈现的实验结果证明,当与对碎裂机制的深入研究结合使用时,ISF 数据是准确分子身份的信息源。

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