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([18]冠-6)-四羧酸与氨基酸之间的非共价相互作用:手性识别过程的电喷雾电离质谱研究

Noncovalent interactions between ([18]crown-6)-tetracarboxylic acid and amino acids: electrospray-ionization mass spectrometry investigation of the chiral-recognition processes.

作者信息

Gerbaux Pascal, De Winter Julien, Cornil David, Ravicini Katia, Pesesse Gaëlle, Cornil Jérôme, Flammang Robert

机构信息

Organic Chemistry Laboratory, Mass Spectrometry Center, University of Mons-Hainaut, 19 Avenue Maistriau, 7000 Mons, Belgium.

出版信息

Chemistry. 2008;14(35):11039-49. doi: 10.1002/chem.200801372.

Abstract

Chiral recognition of enantiomers by host compounds is one of the most challenging topics in modern host-guest chemistry. Amongst the well-established methods, mass spectrometry (MS) is increasingly used nowadays, due to its low detection limit, short analysis time, and suitability for analyzing mixtures and for studying chiral effects in the gas phase. The development of electrospray-ionization (ESI) techniques provides an invaluable tool to study, in the gas phase, diastereoisomeric complex ions prepared from enantiomer ions and a chiral selector. This paper reports on an ESIMS and ESIMSMS study of the molecular mechanisms that intervene in the chiral-recognition phenomena observed between amino acids and a chiral crown ether. The modified crown ether, namely (+)-([18]crown-6)-2,3,11,12-tetracarboxylic acid, is used as the chiral selector when covalently bound on a stationary phase in liquid chromatography. This study was stimulated by the fact that, except with threonine and proline, consistent elution orders were observed, which indicates that the D enantiomers interact more strongly with the chiral selector than the L enantiomers. For proline, the lack of a primary amino group is likely to be responsible for the nonresolution of the two forms, whereas the second stereogenic center on threonine could explain the reversed elution order. In light of those observations, we performed mass spectrometry experiments to understand more deeply the enantiomeric recognition phenomena, both in solution by the enantiomer-labeled guest method and in the gas phase by gas-phase ligand-exchange ion/molecule reactions. The results have been further supported by quantum chemical calculations. One of the most interesting features of this work is the identification of a nonspecific interaction between proline and the crown ether upon ESIMS analysis.

摘要

主体化合物对映体的手性识别是现代主客体化学中最具挑战性的课题之一。在已成熟的方法中,质谱(MS)由于其检测限低、分析时间短,且适用于分析混合物以及研究气相中的手性效应,如今越来越多地被使用。电喷雾电离(ESI)技术的发展为研究由对映体离子和手性选择剂制备的非对映异构络合离子提供了一个宝贵的工具。本文报道了关于氨基酸和手性冠醚之间观察到的手性识别现象所涉及的分子机制的电喷雾电离质谱(ESIMS)和串联电喷雾电离质谱(ESIMSMS)研究。改性冠醚,即(+)-([18]冠-6)-2,3,11,12-四羧酸,在液相色谱中与固定相结合时用作手性选择剂。除苏氨酸和脯氨酸外,观察到一致的洗脱顺序,这表明D对映体与手性选择剂的相互作用比L对映体更强,这一事实激发了本研究。对于脯氨酸,缺乏伯氨基可能是两种形式无法拆分的原因,而苏氨酸上的第二个手性中心可以解释洗脱顺序的反转。鉴于这些观察结果,我们进行了质谱实验,以更深入地了解对映体识别现象,包括通过对映体标记客体法在溶液中以及通过气相配体交换离子/分子反应在气相中进行研究。量子化学计算进一步支持了这些结果。这项工作最有趣的特点之一是在电喷雾电离质谱分析中发现了脯氨酸与冠醚之间的非特异性相互作用。

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