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精氨酸和异构体的差分离子迁移谱的分辨与分配。

Resolution and Assignment of Differential Ion Mobility Spectra of Sarcosine and Isomers.

机构信息

Laboratoire de Chimie Physique, Bâtiment 349, Université Paris-Sud, CNRS, Université Paris-Saclay, F-91405, Orsay, France.

Department of Chemistry, Caudill Laboratories, The University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599-3290, USA.

出版信息

J Am Soc Mass Spectrom. 2018 Apr;29(4):752-760. doi: 10.1007/s13361-018-1902-5. Epub 2018 Feb 21.

Abstract

Due to their central role in biochemical processes, fast separation and identification of amino acids (AA) is of importance in many areas of the biomedical field including the diagnosis and monitoring of inborn errors of metabolism and biomarker discovery. Due to the large number of AA together with their isomers and isobars, common methods of AA analysis are tedious and time-consuming because they include a chromatographic separation step requiring pre- or post-column derivatization. Here, we propose a rapid method of separation and identification of sarcosine, a biomarker candidate of prostate cancer, from isomers using differential ion mobility spectrometry (DIMS) interfaced with a tandem mass spectrometer (MS/MS) instrument. Baseline separation of protonated sarcosine from α- and β-alanine isomers can be easily achieved. Identification of DIMS peak is performed using an isomer-specific activation mode where DIMS- and mass-selected ions are irradiated at selected wavenumbers allowing for the specific fragmentation via an infrared multiple photon dissociation (IRMPD) process. Two orthogonal methods to MS/MS are thus added, where the MS/MS(IRMPD) is nothing but an isomer-specific multiple reaction monitoring (MRM) method. The identification relies on the comparison of DIMS-MS/MS(IRMPD) chromatograms recorded at different wavenumbers. Based on the comparison of IR spectra of the three isomers, it is shown that specific depletion of the two protonated α- and β-alanine can be achieved, thus allowing for clear identification of the sarcosine peak. It is also demonstrated that DIMS-MS/MS(IRMPD) spectra in the carboxylic C=O stretching region allow for the resolution of overlapping DIMS peaks. Graphical Abstract ᅟ.

摘要

由于氨基酸(AA)在生化过程中起着核心作用,因此快速分离和鉴定 AA 在许多生物医学领域都很重要,包括代谢性遗传病的诊断和监测以及生物标志物的发现。由于 AA 的数量众多,以及它们的异构体和同质异位体,常见的 AA 分析方法繁琐且耗时,因为它们包括需要预柱或后柱衍生化的色谱分离步骤。在这里,我们提出了一种使用差分离子迁移谱(DIMS)与串联质谱仪(MS/MS)仪器接口从异构体中快速分离和鉴定肌氨酸的方法,肌氨酸是前列腺癌的生物标志物候选物。质子化肌氨酸与α-和β-丙氨酸异构体的基线分离可以轻松实现。使用异构体特异性激活模式进行 DIMS 峰的鉴定,其中在选定的波数处辐照 DIMS 和质量选择的离子,允许通过红外多光子解离(IRMPD)过程进行特定的碎片化。因此,向 MS/MS 添加了两种正交方法,其中 MS/MS(IRMPD)只不过是一种异构体特异性的多重反应监测(MRM)方法。鉴定依赖于在不同波数下记录的 DIMS-MS/MS(IRMPD)色谱图的比较。基于三种异构体的 IR 光谱的比较,表明可以实现两个质子化的α-和β-丙氨酸的特异性耗尽,从而可以清晰地鉴定肌氨酸峰。还证明了在羧酸 C=O 伸缩区域的 DIMS-MS/MS(IRMPD)光谱允许重叠的 DIMS 峰的分辨率。

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