Institute of Chemistry, Jan Kochanowski University in Kielce, Świętokrzyska 15G, 25-406, Kielce, Poland.
Department of Life Sciences and Chemistry, Jacobs University Bremen gGmbH, 28759, Bremen, Germany.
Amino Acids. 2019 Sep;51(9):1377-1385. doi: 10.1007/s00726-019-02774-7. Epub 2019 Aug 29.
This work presents the first study of the self-disproportionation of enantiomers via chromatography (SDEvC) of β-aminophosphonic acid esters, several of which have been synthesized for the first time. Three types of structures were examined, N-acetylated, dipeptide construction with N-Cbz glycine, and a free amine. In the latter case, this is the first time that SDEvC has been reported for free amine amino acids. In all the three types of structures, significant SDE magnitudes (Δee's up to 55%) were exhibited underscoring the ubiquitous nature of the SDE phenomenon. Chemical models of homo- versus heterochiral intermolecular interactions are proposed to rationalize the SDE magnitude differences amongst these new β-aminophosphonic acid derivatives. In addition, the incorporation of additional, competing binding modes to a molecule, was found to lead to a reduction of the SDE magnitude by shifting the intermolecular binding away from the stereogenic center and/or by leading to a convoluted binding system that disrupts the structured and relatively stable assemblies that give rise to the SDE.
本工作首次研究了β-氨基膦酸酯的对映体自拆分色谱法(SDEvC),其中一些化合物是首次合成的。研究了三种结构,分别是 N-乙酰化、N-Cbz 甘氨酸的二肽结构和游离胺。在后一种情况下,这是首次报道游离胺氨基酸的 SDEvC。在所有三种结构中,均表现出显著的 SDE 幅度(Δee 高达 55%),强调了 SDE 现象的普遍性。提出了同手性和异手性分子间相互作用的化学模型,以合理说明这些新型β-氨基膦酸衍生物之间 SDE 幅度的差异。此外,发现通过向分子中引入额外的竞争结合模式,可以通过将分子间结合从手性中心移开或通过导致复杂的结合系统来减少 SDE 幅度,从而破坏产生 SDE 的结构化和相对稳定的组装。