Studies on the association of 2-thiazolidinecarboxylic acid and antimony potassium tartrate: chiral recognition and prediction of absolute configuration by electrospray ionization mass spectrometry

被引:10
作者
Arakawa, R [1 ]
Kobayashi, M
Fukuo, T
Shiraiwa, T
机构
[1] Kansai Univ, Dept Appl Chem, Osaka 5648680, Japan
[2] Kansai Univ, Fac Engn, Chem Branch, Osaka 5648680, Japan
关键词
D O I
10.1002/rcm.286
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Optically active 2-thiazolidinecarboxylic acid (2-THC), a substrate for D-amino acid oxidase in animal kidney, is known to undergo racemization quickly in solution. The association of (+)- and (-)-2-THC with antimony potassium tartrate K-2[Sb-2(L or D-tart)(2)] was studied by electrospray ionization mass spectrometry (ESI-MS). We observed that relative intensities of associated ions in acetonitrile/water solution were changing as the racemization progressed. For [Sb-2(L-tart)(2)](2-), the intensities of the associated ions increased as (+)-2-THC underwent racemization to a (-)-isomer; on the other hand, the intensity of the associated ion decreased as (-)-2-THC underwent racemization to a (+)-isomer. In the case of [Sb-2(D-tart)(2)](2-), an opposite effect on the intensities of the associated ions was observed. The change in the intensities of associated ions can be used for chiral recognition of (+)-2-THC and (-)-2THC. Stereochemical models of the association of the optical isomers with [Sb-2(L- or D-tart)(2)](2-) were constructed from the consideration of both hydrogen bonding of NH-O functions and HSAB (hard and soft acids and bases) interaction of S and Sb atoms. Comparison of the stereochemical models with the ESI-MS results enabled us to predict the absolute configurations of the 2-THC isomers, Copyright (C) 2001 John Wiley & Sons, Ltd.
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页码:685 / 689
页数:5
相关论文
共 13 条
[1]   DETECTION OF REACTION INTERMEDIATES - PHOTOSUBSTITUTION OF (POLYPYRIDINE)RUTHENIUM(II) COMPLEXES USING ONLINE ELECTROSPRAY MASS-SPECTROMETRY [J].
ARAKAWA, R ;
TACHIYASHIKI, S ;
MATSUO, T .
ANALYTICAL CHEMISTRY, 1995, 67 (22) :4133-4138
[2]   Chiral recognition in association between antimony potassium tartrate and bis(L-alaninate)ethylenediamine cobalt(III) complexes using electrospray ionization mass spectrometry [J].
Arakawa, R ;
Kobayashi, M ;
Ama, T .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2000, 11 (09) :804-808
[3]   Multicomponent quantification of diastereomeric hexosamine monosaccharides using ion trap tandem mass spectrometry [J].
Desaire, H ;
Leary, JA .
ANALYTICAL CHEMISTRY, 1999, 71 (19) :4142-4147
[4]   Differentiation of diastereomeric N-acetylhexosamine monosaccharides using ion trap tandem mass spectrometry [J].
Desaire, H ;
Leary, JA .
ANALYTICAL CHEMISTRY, 1999, 71 (10) :1997-2002
[5]   REACTIONS OF CYSTEAMINE AND OTHER AMINE METABOLITES WITH GLYOXYLATE AND OXYGEN CATALYZED BY MAMMALIAN D-AMINO-ACID OXIDASE [J].
HAMILTON, GA ;
BUCKTHAL, DJ ;
MORTENSEN, RM ;
ZERBY, KW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1979, 76 (06) :2625-2629
[6]   CHIRAL RECOGNITION IN MOLECULAR COMPLEXATION FOR THE CROWN-ETHER AMINO ESTER SYSTEM - A FACILE FAB MASS-SPECTROMETRIC APPROACH [J].
SAWADA, M ;
TAKAI, Y ;
YAMADA, H ;
KANEDA, T ;
KAMADA, K ;
MIZOOKU, T ;
HIROSE, K ;
TOBE, Y ;
NAEMURA, K .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1994, (21) :2497-2498
[7]  
SAWADA M, 1994, BIOLOGICAL MASS SPECTROMETRY: PRESENT AND FUTURE, P639
[8]  
Sawada M., 1997, J MASS SPECTROM SOC, V45, P439
[9]  
Shiraiwa T, 1999, CHEM PHARM BULL, V47, P1180
[10]   Mechanistic studies of diastereomeric nickel(II) N-glycoside complexes using tandem mass spectrometry [J].
Smith, G ;
Leary, JA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (50) :13046-13056