Yuan Xuejun, Ress Dino K, Linhardt Robert J
Department of Chemistry and Chemical Biology, Rensselaer Polytechnic Institute, Troy, New York 12180, USA.
J Org Chem. 2007 Apr 13;72(8):3085-8. doi: 10.1021/jo0623787. Epub 2007 Mar 20.
The Neu5Acalpha(2,8)Neu5Ac disaccharide is an important constituent of tumor related antigen, however, the O-linkage is catabolically unstable. Vaccination with a catabolically stable sialic acid C-glycoside analog might enhance immunogenicity. The synthesis of Neu5Ac nor-C-disaccharide 20R/S, corresponding to versatile precursors of C-analogs of oligosialic acid and gangliosides, is reported. The synthesis of the protected acceptor was not straightforward, as ester, silyl ether, and isopropylidene protection failed to afford desired C-linked disaccharide. Allyl ether protection of hydroxyl groups and acetyl protection of the acetamido facilitated the successful synthesis of the 8-aldehyde neuraminyl acceptor. Samarium mediated C-glycosylation afforded the desired nor-C-disaccharide as a mixture of two separable diastereomers.
Neu5Acalpha(2,8)Neu5Ac二糖是肿瘤相关抗原的重要组成部分,然而,O-连接在分解代谢上不稳定。用分解代谢稳定的唾液酸C-糖苷类似物进行疫苗接种可能会增强免疫原性。本文报道了对应于寡唾液酸和神经节苷脂C-类似物通用前体的Neu5Ac正-C-二糖20R/S的合成。受保护受体的合成并不简单,因为酯、硅醚和亚异丙基保护均未能得到所需的C-连接二糖。羟基的烯丙基醚保护和乙酰氨基的乙酰保护促进了8-醛神经氨酸受体的成功合成。钐介导的C-糖基化得到了所需的正-C-二糖,为两种可分离非对映异构体的混合物。