A NONEMPIRICAL METHOD USING LC MS FOR DETERMINATION OF THE ABSOLUTE-CONFIGURATION OF CONSTITUENT AMINO-ACIDS IN A PEPTIDE - ELUCIDATION OF LIMITATIONS OF MARFEYS METHOD AND OF ITS SEPARATION MECHANISM/
Citation
K. Fujii et al., A NONEMPIRICAL METHOD USING LC MS FOR DETERMINATION OF THE ABSOLUTE-CONFIGURATION OF CONSTITUENT AMINO-ACIDS IN A PEPTIDE - ELUCIDATION OF LIMITATIONS OF MARFEYS METHOD AND OF ITS SEPARATION MECHANISM/, Analytical chemistry, 69(16), 1997, pp. 3346-3352
Categorie Soggetti
Chemistry Analytical
SICI code
0003-2700(1997)69:16<3346:ANMULM>2.0.ZU;2-#
Abstract
As the first step in establishing our proposed method, the advanced Ma
rfey's method, which is planned for the simultaneous determination of
the absolute configuration of amino acids in a peptide, we applied Mar
fey's method to commercially available amino acids, and the separation
behavior was examined in detail, Although good resolution of the dias
tereomeric pair of an individual amino acid was obtained for all amino
acids tested and the applicability of the method was confirmed, the (
1-fluoro-2,4-dinitrophenyl)-5-L-alaninamide (FDAA) derivative of the L
-amino acid was not always eluted prior to its corresponding D-amino a
cid derivative. Because this proposed method relies on the elution ord
er of a derivatized amino acid with FDAA to determine its absolute con
figuration, its separation mechanism was carefully investigated using
UV and NMR spectral techniques, The results suggested that the resulti
ng conformations of the L-and D-amino acid derivatives are stable and
that the resolution between the L-and D-amino acid derivatives is due
to the difference in their hydrophobicity, which is derived from the c
is- or trans-type arrangement of two more hydrophobic substituents at
both alpha-carbons of an amino acid and L-alanine amide, so that the F
DAA derivative of the cis (Z)-type arrangement interacts more strongly
with ODS silica gel and has a longer retention time than that of the
trans (E)-type arrangement, Therefore, the L-amino acid derivative is
usually eluted from the column before its corresponding D-amino acid d
erivative in Marfey's method, According to this separation mechanism,
the elution order of a desired amino acid can be elucidated from the a
verage retention time of the L-and D-amino acid derivatives, and the D
L-serine and -asparagine derivatives are critical for Marfey's method.