| Literature DB >> 30311082 |
Takuma Hosaka1, Tomomi Imai1, Alicja Wzorek2,3, Magdalena Marcinkowska4, Anna Kolbus4, Osamu Kitagawa1, Vadim A Soloshonok5,6, Karel D Klika7.
Abstract
α-Amino acids (α-AAs) are in extremely high demand in nearly every sector of the food and health-related chemical industries and continue to be the subject of intense multidisciplinary research. The self-disproportionation of enantiomers (SDE) is an emerging and one of the least studied areas of α-AA or enantiomeric properties, critically important for their production and application. In the present work, we report a detailed study of the SDE via achiral, gravity-driven column chromatography for a set of N-acylated, N-carbonylated, N-fluoroacylated, and N-thioacylated α-amino acid esters. As well as thioacylation, attention was paid to the effect of altering the R group of the ester functionality, the side chain, or that of the acyl group attached to the amide nitrogen, whereby it was found that electron-withdrawing groups in the latter moiety had a pronounced effect on the magnitude and behavior of the resulting SDE phenomenon. Intriguingly, in the case of N-fluoroacylated derivatives, by favoring the formation of dimeric associates and effecting a strong bias toward homochiral associates over heterochiral associates, the SDE magnitude was greatly reduced contrary to intuitive expectations. Energy estimates resulted from DFT calculations.Entities:
Keywords: Achiral column chromatography; DFT calculations; Enantioenrichment/-depletion; Molecular chirality; N-(Thio)acylated α-amino acid esters; Self-disproportionation of enantiomers (SDE)
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Year: 2018 PMID: 30311082 DOI: 10.1007/s00726-018-2664-x
Source DB: PubMed Journal: Amino Acids ISSN: 0939-4451 Impact factor: 3.520