Department of Chemistry of Medicinal Natural Products, Sichuan Engineering Laboratory for Plant-Sourced Drug and Research Center for Drug Industrial Technology, West China School of Pharmacy, and State Key Laboratory of Biotherapy , West China Hospital, Sichuan University , Chengdu 610041 , China.
J Am Chem Soc. 2018 Mar 14;140(10):3574-3582. doi: 10.1021/jacs.7b09461. Epub 2018 Mar 6.
The stereodirecting effect of C5-ester functions on the glycosylation stereoselectivity of 3-deoxy-d- manno-oct-2-ulosonic acid (Kdo) ethyl thioglycoside donors is presented. The coupling of 5- O-arylcarbonyl or acetyl protected Kdo thioglycosides with acceptors proceeds in an α-selective and high-yielding manner, leading to formation of α-linked Kdo glycosides products. On the other hand, the glycosylation stereoselectivity of the 5- O-2-quinolinecarbonyl (Quin) or 4-nitropicoloyl substituted Kdo thioglycoside donors is switchable: (1) The glycosylation of the 5- O-Quin carrying Kdo donors with primary glycosyl acceptors shows complete β-stereoselectivity, furnishing the corresponding β-glycosides in good-to-excellent yield. (2) The stereochemical outcome of the secondary acceptors with these Kdo donors is determined mainly by the stereoelectronic nature of the acceptor. Only or predominant α anomeric products are obtained when the Kdo donors couple with the disarmed or highly crowded secondary carbohydrate acceptors, while the selectivity may switch to predominant β in the glycosylation of the 5- O-4-nitropicoloyl carrying donor with more reactive secondary alcohols. The synthetic use of the newly developed Kdo donors 1c and 7b has been demonstrated by facile preparation of a structurally unique trisaccharide motif 19 which possesses both α- and β-Kdo glycosidic bonds.
呈现了 C5-酯基官能团对 3-脱氧-D-甘露辛-2-酮酸(Kdo)乙基硫代糖苷供体的糖苷化立体选择性的立体定向效应。5-O-芳基羰基或乙酰保护的 Kdo 硫代糖苷与受体的偶联以α-选择性和高产率进行,导致α-连接的 Kdo 糖苷产物的形成。另一方面,5-O-2-喹啉羰基(Quin)或 4-硝基邻苯二甲酰基取代的 Kdo 硫代糖苷供体的糖苷化立体选择性是可切换的:(1)与初级糖基受体的 5-O-Quin 携带 Kdo 供体的糖苷化显示出完全的β立体选择性,以良好至优异的产率提供相应的β-糖苷。(2)这些 Kdo 供体与次级受体的立体化学结果主要取决于受体的立体电子性质。当 Kdo 供体与非武装或高度拥挤的次级碳水化合物受体偶联时,仅获得或主要获得α端基产物,而当 Kdo 供体与更具反应性的次级醇进行糖苷化时,选择性可能切换为主要β。新开发的 Kdo 供体 1c 和 7b 的合成用途已通过易于制备具有独特结构的三糖基序 19 得到证明,该三糖基序同时具有α-和β-Kdo 糖苷键。