Publication details

NMR spectroscopic detection of chirality and enantiopurity in referenced systems without formation of diastereomers

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Authors

LABUTA Jan ISHIHARA Shinsuke ŠIKORSKÝ Tomáš FUTERA Zdeněk SHUNDO Atsuomi HANYKOVÁ Lenka BURDA Jaroslav ARIGA Katsuhiko HILL Jonathan P.

Year of publication 2013
Type Article in Periodical
Magazine / Source NATURE COMMUNICATIONS
MU Faculty or unit

Central European Institute of Technology

Citation
Web http://www.nature.com/ncomms/2013/130717/ncomms3188/full/ncomms3188.html
Doi http://dx.doi.org/10.1038/ncomms3188
Field Biochemistry
Keywords ENANTIOMERIC EXCESS; ABSOLUTE-CONFIGURATION; MOLECULAR RECOGNITION; PORPHYRIN; ACID; AMPLIFICATION; COMPLEXES; MECHANISM; ALCOHOLS; MEMORY
Description Enantiomeric excess of chiral compounds is a key parameter that determines their activity or therapeutic action. The current paradigm for rapid measurement of enantiomeric excess using NMR is based on the formation of diastereomeric complexes between the chiral analyte and a chiral resolving agent, leading to (at least) two species with no symmetry relationship. Here we report an effective method of enantiomeric excess determination using a symmetrical achiral molecule as the resolving agent, which is based on the complexation with analyte (in the fast exchange regime) without the formation of diastereomers. The use of N, N'-disubstituted oxoporphyrinogen as the resolving agent makes this novel method extremely versatile, and appropriate for various chiral analytes including carboxylic acids, esters, alcohols and protected amino acids using the same achiral molecule. The model of sensing mechanism exhibits a fundamental linear response between enantiomeric excess and the observed magnitude of induced chemical shift non-equivalence in the H-1 NMR spectra.
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