Zhao Wei, Kong Fanzuo
Research Center for Eco-Environmental Sciences, Academia Sinica, PO Box 2871, Beijing 100085, China.
Carbohydr Res. 2005 Jul 25;340(10):1673-81. doi: 10.1016/j.carres.2005.05.003.
Beta-D-Xylp-(1-->2)-alpha-D-Manp-(1-->3)-[beta-D-Xylp-(1-->2)][beta-D-Xylp-(1-->4)]-alpha-D-Manp-(1-->3)-[beta-D-Xylp-(1-->4)]-alpha-D-Manp, the fragment of the exopolysaccharide from Cryptococcus neoformans serovar C, was synthesized as its methyl glycoside. Thus, chloroacetylation of allyl 3-O-acetyl-4,6-O-benzylidene-alpha-D-mannopyranoside (1) followed by debenzylidenation and selective 6-O-benzoylation afforded allyl 2-O-chloroacetyl-3-O-acetyl-6-O-benzoyl-alpha-D-mannopyranoside (4). Glycosylation of 4 with 2,3,4-tri-O-benzoyl-D-xylopyranosyl trichloroacetimidate (5) furnished the beta-(1-->4)-linked disaccharide 6. Dechloroacetylation gave the disaccharide acceptor 7 and subsequent coupling with 5 produced the trisaccharide 8. Deacetylation of 8 gave the trisaccharide acceptor 9 and subsequent coupling with a disaccharide 10 produced the pentasaccharide 11. Reiteration of deallylation and trichloroacetimidate formation from 11 yielded the pentasaccharide donor 12. Coupling of a disaccharide acceptor 13 with 12 afforded the heptasaccharide 14. Subsequent deprotection gave the heptaoside 16, while selective 2-O-deacetylation of 14 gave the heptasaccharide acceptor 15. Condensation of 15 with glucopyranosyluronate imidate 17 did not yield the expected octaoside, instead, an orthoester product 18 was obtained. Rearrangement of 18 did not give the target octaoside; but produced 15. Meanwhile, there was no reaction between 15 and the glycosyl bromide donor 19.
β-D-木糖基-(1→2)-α-D-甘露糖基-(1→3)-[β-D-木糖基-(1→2)][β-D-木糖基-(1→4)]-α-D-甘露糖基-(1→3)-[β-D-木糖基-(1→4)]-α-D-甘露糖,新型隐球菌血清型C胞外多糖的片段,被合成为其甲基糖苷。因此,烯丙基3-O-乙酰基-4,6-O-亚苄基-α-D-甘露吡喃糖苷(1)经氯乙酰化,然后脱亚苄基和选择性6-O-苯甲酰化,得到烯丙基2-O-氯乙酰基-3-O-乙酰基-6-O-苯甲酰基-α-D-甘露吡喃糖苷(4)。4与2,3,4-三-O-苯甲酰基-D-木糖基三氯乙酰亚胺酯(5)进行糖基化反应,得到β-(1→4)连接的二糖6。脱氯乙酰化得到二糖受体7,随后与5偶联生成三糖8。8脱乙酰化得到三糖受体9,随后与二糖10偶联生成五糖11。从11重复进行脱烯丙基化和三氯乙酰亚胺酯的形成,得到五糖供体12。二糖受体13与12偶联得到七糖14。随后的脱保护得到七糖苷16,而14的选择性2-O-脱乙酰化得到七糖受体15。15与葡萄糖醛酸亚胺酯17缩合未得到预期的八糖苷,而是得到了原酸酯产物18。18的重排未得到目标八糖苷,而是生成了15。同时,15与糖基溴供体19之间没有反应。