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Noncovalent interactions between ([18]crown-6)-tetracarboxylic acid and amino acids: electrospray-ionization mass spectrometry investigation of the chiral-recognition processes.
Chemistry. 2008; 14(35):11039-49.C

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.

Authors+Show Affiliations

Organic Chemistry Laboratory, Mass Spectrometry Center, University of Mons-Hainaut, 19 Avenue Maistriau, 7000 Mons, Belgium. Pascal.Gerbaux@umh.ac.beNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

18956399

Citation

Gerbaux, Pascal, et al. "Noncovalent Interactions Between ([18]crown-6)-tetracarboxylic Acid and Amino Acids: Electrospray-ionization Mass Spectrometry Investigation of the Chiral-recognition Processes." Chemistry (Weinheim an Der Bergstrasse, Germany), vol. 14, no. 35, 2008, pp. 11039-49.
Gerbaux P, De Winter J, Cornil D, et al. Noncovalent interactions between ([18]crown-6)-tetracarboxylic acid and amino acids: electrospray-ionization mass spectrometry investigation of the chiral-recognition processes. Chemistry. 2008;14(35):11039-49.
Gerbaux, P., De Winter, J., Cornil, D., Ravicini, K., Pesesse, G., Cornil, J., & Flammang, R. (2008). Noncovalent interactions between ([18]crown-6)-tetracarboxylic acid and amino acids: electrospray-ionization mass spectrometry investigation of the chiral-recognition processes. Chemistry (Weinheim an Der Bergstrasse, Germany), 14(35), 11039-49. https://doi.org/10.1002/chem.200801372
Gerbaux P, et al. Noncovalent Interactions Between ([18]crown-6)-tetracarboxylic Acid and Amino Acids: Electrospray-ionization Mass Spectrometry Investigation of the Chiral-recognition Processes. Chemistry. 2008;14(35):11039-49. PubMed PMID: 18956399.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Noncovalent interactions between ([18]crown-6)-tetracarboxylic acid and amino acids: electrospray-ionization mass spectrometry investigation of the chiral-recognition processes. AU - Gerbaux,Pascal, AU - De Winter,Julien, AU - Cornil,David, AU - Ravicini,Katia, AU - Pesesse,Gaëlle, AU - Cornil,Jérôme, AU - Flammang,Robert, PY - 2008/10/29/pubmed PY - 2009/1/24/medline PY - 2008/10/29/entrez SP - 11039 EP - 49 JF - Chemistry (Weinheim an der Bergstrasse, Germany) JO - Chemistry VL - 14 IS - 35 N2 - 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. SN - 1521-3765 UR - https://www.unboundmedicine.com/medline/citation/18956399/Noncovalent_interactions_between__[18]crown_6__tetracarboxylic_acid_and_amino_acids:_electrospray_ionization_mass_spectrometry_investigation_of_the_chiral_recognition_processes_ L2 - https://doi.org/10.1002/chem.200801372 DB - PRIME DP - Unbound Medicine ER -