Department of Organic Chemistry, Faculty of Chemistry, University of Seville, Profesor García González 1, E-41012 Seville, Spain.
Bioorg Med Chem. 2010 Jul 1;18(13):4648-60. doi: 10.1016/j.bmc.2010.05.026. Epub 2010 May 11.
The synthesis of a novel aminomethyl C-3 substituted L-fuco-azafagomine and of its C-6 epimer from D-lyxose is reported. The key step of the synthesis is the introduction of the biimino (-NH-NH-) moiety by reductive hydrazination of a 1-deoxy-ketohexose with tert-butyl carbazate. The 3-aminomethyl-azafagomine derivatives were used as lead compounds in the generation of libraries of novel types of derivatives by attaching different hydrophobic groups on the aminomethyl substituent through amide linkages. These polyhydroxylated hexahydropyridazines can be viewed as a new type of diaza-C-glycoside analogues having a biimino (-NH-NH-) moiety. The conformational analysis and the glycosidase inhibitory properties of all the new C-3 substituted azafagomines synthesized are also reported. Those having L-fuco configuration have shown a selective inhibition of α-L-fucosidases.
报告了一种新型的 C-3 氨甲基取代的 L-岩藻糖氮杂环庚烷及其 C-6 差向异构体,由 D-来苏糖合成。合成的关键步骤是通过叔丁基碳酰胺的还原肼解,在 1-脱氧酮己糖上引入双亚氨基(-NH-NH-)部分。3-氨甲基氮杂环庚烷衍生物被用作先导化合物,通过酰胺键将不同的疏水性基团连接到氨甲基取代基上,生成新型的衍生物文库。这些多羟基六氢哒嗪可被视为具有双亚氨基(-NH-NH-)部分的新型氮杂-C-糖苷类似物。还报道了所有新合成的 C-3 取代氮杂环庚烷的构象分析和糖苷酶抑制特性。具有 L-岩藻糖构型的化合物对α-L-岩藻糖苷酶表现出选择性抑制。