Mercer Gregory J, Yang Jaemoon, McKay Matthew J, Nguyen Hien M
Department of Chemistry and Biochemistry, Montana State University, Bozeman, Montana 59717, USA.
J Am Chem Soc. 2008 Aug 20;130(33):11210-8. doi: 10.1021/ja803378k. Epub 2008 Jul 19.
The research on the area of glycosyl urea derivatives, in which the O- and N-glycosidic bonds are replaced with the urea-glycosidic linkages, has recently emerged with applications in the field of aminoglycoside antibiotics. We have developed a novel method for the stereoselective synthesis of alpha- and beta-glycosyl ureas via Pd(II)-catalyzed rearrangement of glycal trichloroacetimidates. In our approach, the alpha- and beta-selectivity at the anomeric carbon of N-glycosyl trichloroacetamides depends on the nature of the palladium-ligand catalyst. While the cationic Pd(II)-L-4 (2-trifluoroacetylphenol) complex promotes alpha-selectivity, the neutral Pd(II)-TTMPP-L-5 (4-chloro-2-trifluoroacetylphenol) complex favors beta-selectivity. The resulting alpha- and beta-N-glycosyl trichloroacetamides were further coupled with a diverse array of primary and hindered secondary nitrogen nucleophiles to provide the corresponding glycosyl ureas in moderate to good yields and with no loss of stereochemical integrity at the anomeric carbon. We have further demonstrated the utility of N-glycosyl trichloroacetamides as robust and versatile intermediates in the synthesis of unsymmetrical urea-linked disaccharides and trisaccharide.
对糖基脲衍生物领域的研究最近在氨基糖苷类抗生素领域有了应用,该领域中O-糖苷键和N-糖苷键被脲糖苷键所取代。我们已经开发出一种通过钯(II)催化的糖基三氯乙酰亚胺酯重排来立体选择性合成α-和β-糖基脲的新方法。在我们的方法中,N-糖基三氯乙酰胺异头碳上的α-和β-选择性取决于钯-配体催化剂的性质。虽然阳离子钯(II)-L-4(2-三氟乙酰苯酚)络合物促进α-选择性,但中性钯(II)-TTMPP-L-5(4-氯-2-三氟乙酰苯酚)络合物有利于β-选择性。所得的α-和β-N-糖基三氯乙酰胺进一步与各种伯胺和受阻仲氮亲核试剂偶联,以中等至良好的产率提供相应的糖基脲,且异头碳处的立体化学完整性没有损失。我们进一步证明了N-糖基三氯乙酰胺作为合成不对称脲连接的二糖和三糖的稳健且通用的中间体的实用性。