Department of Chemistry, University of Copenhagen, 2100 Copenhagen Ø, Denmark.
Chemistry. 2011 Jun 14;17(25):7080-6. doi: 10.1002/chem.201100020. Epub 2011 May 3.
Methyl amino-deoxy-glycosides with α- and β-gluco, α-galacto, or α-manno stereochemistry with the amino functionality in each of the four possible non-anomeric positions have been synthesized and their pK(a) values determined by titration. These model compounds were chosen because they are the amino derivatives of the most common glycosyl acceptors. From this study it was possible to evaluate the electron density at each of the given positions in the carbohydrate and compare them. Some general trends were observed: The basicity of the amino groups decreases in the order 6-NH(2)>3-NH(2)>2-NH(2)>4-NH(2) (referring to the position). The basicity of a of an amino-deoxy-sugar generally increases when one or more substituents on the sugar ring are axial. The basicity decreases when the amine is antiperiplanar to an oxygen atom. These findings are in agreement with the observations obtained from glycosylation chemistry and the regioselective protection of sugars.
已合成具有 α-和 β-葡糖、α-半乳糖或 α-甘露糖立体化学结构的甲基氨基去氧糖苷,并通过滴定法测定了其 pK(a) 值。选择这些模型化合物是因为它们是最常见糖基受体的氨基衍生物。通过这项研究,可以评估碳水化合物中每个指定位置的电子密度并进行比较。观察到一些一般趋势:氨基的碱性按 6-NH(2)>3-NH(2)>2-NH(2)>4-NH(2) 的顺序降低(指位置)。当糖环上的一个或多个取代基为轴向时,氨基去氧糖的碱性通常会增加。当胺与氧原子反式平行时,碱性降低。这些发现与糖基化化学和糖的区域选择性保护中获得的观察结果一致。