Synthesis of Enantiomerically Enriched 1,2,3- Triazole-derivatized Homoalanines

M. Turks, N. Strelnikova, V. Kumpiņš, U. Kalējs
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Abstract

In recent decades, the synthesis of amino acid – triazole conjugates has become an emerging area. L- and Dazidohomoalanine derivatives readily undergo copper(I)- catalyzed azide-alkyne dipolar cycloaddition reaction. The expected 4-substituted-1H-1,2,3-triazol-1-yl-homoalanines are obtained in the reactions of either N- and O-protected or protecting-group-free azidohomoalanines with various alkynes. 1,2,3-Triazole conjugate formation tolerates various functional groups. The synthetic approach that uses N- and O-protected starting materials relays on the standard chromatographic purification of intermediates that are further deprotected by hydrogenolysis. In this way, the purification of final products is not required. The synthetic approach that uses protecting-groupfree azidohomoalanine is faster from a synthetic point of view as it includes only one step. However, the purification of protectinggroup- free amino acid derivatives is laborious. Additionally, we have shown that the chiral stationary phase CROWNPAK® CR(+), which is based on chiral crown ether as a selector, is applicable for direct chromatographic determination of enantiomeric ratio of the title products.
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对映体富集1,2,3-三唑衍生同丙氨酸的合成
近几十年来,氨基酸-三唑缀合物的合成已成为一个新兴的领域。L-和Dazidohomoalanine衍生物容易发生铜(I)催化叠氮-炔偶极环加成反应。有N和o保护或无保护基团的叠氮多同丙氨酸与不同的炔反应可得到预期的4-取代- 1h -1,2,3-三唑-1-酰基同丙氨酸。1,2,3-三唑缀合物可耐受多种官能团。使用N和o保护起始材料的合成方法依赖于中间体的标准色谱纯化,这些中间体通过氢解进一步去保护。这样,就不需要对最终产物进行提纯。从合成的角度来看,使用无保护基团叠氮同质丙氨酸的合成方法更快,因为它只包括一步。然而,无保护基氨基酸衍生物的纯化是非常困难的。此外,我们已经证明,以手性冠醚为选择剂的手性固定相CROWNPAK®CR(+)适用于直接色谱法测定标题产品的对映体比例。
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