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Variations on the SnCl4 and CF3CO2Ag-promoted glycosidation of sugar acetates: a direct, versatile and apparently simple method with either alpha or beta stereocontrol

机译:SnCl4和CF3CO2Ag促进的乙酸糖苷糖基化反应的变化:具有alpha或beta立体控制的直接,通用和看似简单的方法

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摘要

Glycosidation of sugar peracetates (D-gluco, D-galacto) with SnCl4 and CF3CO2Ag led to either 1,2-cis-, or 1,2-trans-glycosides, depending primarily on the alcohols used. In particular, 1.2-trans-glycosides, expected from acyl-protected glycosyl donors, were formed in high yields with alcohols sharing specific features such as bulkiness, presence of electron-withdrawing groups or polyethoxy motifs. In contrast, simple alcohols afforded similar to 1:1 mixtures of 2,3,4,6-tetra-O-acetyl, and 3,4,6-tri-O-acetyl 1,2-cis-glycosides due to anomerization and/or acid-catalyzed fragmentation of 1,2-orthoester intermediates. After reacetylation or deacetylation, acetylated or fully deprotected 1,2-cis-glycosides (alpha-D-gluco, alpha-D-galacto) were obtained in similar to 90% yields by a simple and direct method.
机译:糖过乙酸盐(D-葡萄糖,D-半乳糖)与SnCl4和CF3CO2Ag的糖基化作用会导致1,2-顺式或1,2-反式-苷,主要取决于所用的醇。特别地,由酰基保护的糖基供体预期的1.2-反式-糖苷以高收率形成,其醇具有共享的特定特征,例如体积大,吸电子基团或聚乙氧基基序。相比之下,由于醇的异构化作用,简单的醇类化合物提供类似于2,3,4,6-四-O-乙酰基和3,4,6-三-O-乙酰基1,2-顺式糖苷的1:1混合物。 /或酸催化的1,2-原酸酯中间体的裂解。在重新乙酰化或脱乙酰化之后,通过简单直接的方法以接近90%的收率获得了乙酰化或完全脱保护的1,2-顺式糖苷(α-D-葡萄糖,α-D-半乳糖)。

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