Lee Jinq-Chyi, Chang Shu-Wen, Liao Chih-Cheng, Chi Fa-Chen, Chen Chien-Sheng, Wen Yuh-Sheng, Wang Cheng-Chung, Kulkarni Suvarn S, Puranik Ramachandra, Liu Yi-Hung, Hung Shang-Cheng
Department of Chemistry, National Tsing Hua University, Hsinchu 300, Taiwan.
Chemistry. 2004 Jan 23;10(2):399-415. doi: 10.1002/chem.200305096.
A novel and convenient route for the synthesis of biologically potent and rare L-hexose derivatives from D-glucose is described. Conversion of diacetone-alpha-D-glucose (14) into 1,2:3,5-di-O-isopropylidene-beta-L-idofuranose (19) was efficiently carried out in two steps. Orthogonal isopropylidene rearrangement of compound 19 led to 1,2:5,6-di-O-isopropylidene-beta-L-idofuranose (27), which underwent regioselective epimerization at the C3 position to give the L-talo- and 3-functionalized L-idofuranosyl derivatives. Hydrolysis of compound 19 under acidic conditions furnished 1,6-anhydro-beta-L-idopyranose (35) in excellent yield, which was successfully transformed into the corresponding L-allo, L-altro, L-gulo, and L-ido derivatives via regioselective benzylation, benzoylation, triflation and nucleophilic substitution as the key steps. Applications of these 1,6-anhydro-beta-L-hexopyranoses as valuable building blocks to the syntheses of 4-methylcoumarin-7-yl-alpha-L-iduronic acid and the disaccharide moieties of bleomycin A(2) as well as heparan sulfate are highlighted.
本文描述了一种从D-葡萄糖合成具有生物活性的稀有L-己糖衍生物的新颖便捷方法。二丙酮-α-D-葡萄糖(14)分两步高效转化为1,2:3,5-二-O-异亚丙基-β-L-艾杜呋喃糖(19)。化合物19的正交异亚丙基重排生成1,2:5,6-二-O-异亚丙基-β-L-艾杜呋喃糖(27),其在C3位进行区域选择性差向异构化,得到L-塔罗糖和3-官能化的L-艾杜呋喃糖基衍生物。化合物19在酸性条件下水解,以优异的产率得到1,6-脱水-β-L-艾杜吡喃糖(35),通过区域选择性苄基化、苯甲酰化、三氟甲磺酸酯化和亲核取代等关键步骤,成功将其转化为相应的L-阿洛糖、L-阿卓糖、L-古洛糖和L-艾杜糖衍生物。重点介绍了这些1,6-脱水-β-L-己吡喃糖作为有价值的结构单元在合成4-甲基香豆素-7-基-α-L-艾杜糖醛酸、博来霉素A(2)的二糖部分以及硫酸乙酰肝素中的应用。