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综合在线反相×手性二维液相色谱-质谱联用,具有数据非依赖性顺序窗口采集所有理论碎片离子谱-用于非靶向性氨基酸分析的手性分析。

Comprehensive Online Reversed-Phase × Chiral Two-Dimensional Liquid Chromatography-Mass Spectrometry with Data-Independent Sequential Window Acquisition of All Theoretical Fragment-Ion Spectra-Acquisition for Untargeted Enantioselective Amino Acid Analysis.

机构信息

Institute of Pharmaceutical Sciences, Pharmaceutical (Bio-)Analysis, University of Tübingen, Auf der Morgenstelle 8, 72076 Tübingen, Germany.

Division of Metabolic and Nutritional Medicine, Dr. von Hauner Children's Hospital, Ludwig-Maximilians-University Munich Medical Center, Lindwurmstraße 4, 80337 Munich, Germany.

出版信息

Anal Chem. 2022 Dec 13;94(49):17063-17072. doi: 10.1021/acs.analchem.2c03042. Epub 2022 Nov 28.

Abstract

This work presents an advanced analytical platform for untargeted enantioselective amino acid analysis (eAAA) by comprehensive achiral × chiral 2D-LC hyphenated to ESI-QTOF-MS/MS utilizing data-independent SWATH (sequential window acquisition of all theoretical fragment-ion spectra) technology. The methodology involves -terminal pre-column derivatization with 6-aminoquinolyl--hydroxysuccinimidyl carbamate (AQC; AccQ) as retention, selectivity, and MS tag, supporting retention and UV detection in RPLC (D), chiral recognition, and thus enantioselectivity by the core-shell tandem column composed of a quinine carbamate weak anion exchanger (QN-AX) and a zwitterionic chiral ion-exchanger (ZWIX(+)) (D) as well as the ionization efficiency during positive electrospray ionization due to a high proton affinity of the AQC label. Furthermore, the urea-type MS tag gives rise to the generation of AQC-tag characteristic signature fragments in MS. The latter allows the chemoselective mass spectrometric filtering of targeted and untargeted -derivatized amino acids or related labeled species. The chiral core-shell tandem column provides a complete enantioselective amino acid profile of all proteinogenic amino acids within 1 min, with full baseline separation of all enantiomers, but without resolution of isomeric Ile/-Ile (aIle)/Leu, which can be resolved by RPLC. The entire LC × LC separation occurs within a total run time of 60 min (D), with the chiral D operated in gradient elution mode and a cycle time of 60 s. A strategy to mine the 2D-LC-SWATH data is presented and demonstrated for the qualitative eAAA of two peptide hydrolysate samples of therapeutic peptides containing common and uncommon as well as primary and secondary amino acids. Absolute configuration assignment of amino acids using template matching for all proteinogenic amino acids was made feasible due to method robustness and the inclusion of an isotopically labeled L-[U-CN]-AA standard. The quantification performance of this LC × LC-MS/MS assay was also evaluated. Accuracies were acceptable for the majority of AAs enabling AA composition determination in peptide hydrolysates simultaneously with configuration assignment, as exemplified by oxytocin. This methodology represents a step toward truly untargeted 2D enantioselective amino acid analysis and metabolomics.

摘要

本文提出了一种先进的分析平台,用于通过非靶向性对映体选择性氨基酸分析(eAAA),方法是将非手性×手性二维液相色谱与电喷雾串联四极杆飞行时间质谱/质谱(ESI-QTOF-MS/MS)联用,并利用数据非依赖性 SWATH(所有理论碎片离子谱的顺序窗口采集)技术。该方法涉及末端预柱衍生化,使用 6-氨基喹啉基-N-羟基琥珀酰亚胺基氨基甲酸酯(AQC;AccQ)作为保留、选择性和 MS 标记物,支持 RPLC(D)中的保留和 UV 检测、手性识别,以及由辛基氨基甲酸弱阴离子交换器(QN-AX)和两性离子手性离子交换器(ZWIX(+))组成的核壳串联柱的手性选择性(D)以及由于 AQC 标记物的高质子亲和力,在正电喷雾电离过程中的电离效率。此外,脲型 MS 标记物会导致在 MS 中生成 AQC 标记特征片段。后者允许对靶向和非靶向衍生化氨基酸或相关标记物进行化学选择性质谱过滤。手性核壳串联柱可在 1 分钟内提供所有蛋白氨基酸的完整对映体选择性氨基酸图谱,所有对映异构体完全基线分离,但无法分辨异构的 Ile/-Ile(aIle)/Leu,这可以通过 RPLC 分辨。整个 LC×LC 分离在 60 分钟(D)的总运行时间内完成,手性 D 以梯度洗脱模式运行,循环时间为 60 秒。提出并演示了一种挖掘二维液相色谱 SWATH 数据的策略,用于对含有常见和不常见以及一级和二级氨基酸的两种肽水解物样品进行定性 eAAA。由于方法的稳健性和包含同位素标记的 L-[U-CN]-AA 标准,使得对所有蛋白氨基酸进行绝对构型赋值成为可能。还评估了该 LC×LC-MS/MS 测定的定量性能。大多数 AA 的准确度可接受,使肽水解物中 AA 组成的同时确定与构型赋值成为可能,例如催产素。该方法代表了朝着真正的非靶向二维对映体选择性氨基酸分析和代谢组学迈进的一步。

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