Nasi Ravindranath, Patrick Brian O, Sim Lyann, Rose David R, Pinto B Mario
Department of Chemistry, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6.
J Org Chem. 2008 Aug 15;73(16):6172-81. doi: 10.1021/jo800855n. Epub 2008 Jul 24.
The synthesis of new seven-carbon, chain-extended sulfonium salts of 1,4-anhydro-4-thio- d-arabinitol, analogues of the naturally occurring glycosidase inhibitor salacinol, are described. These compounds were designed on the basis of the structure activity data of chain-extended analogues of salacinol, with the intention of determining the hitherto unknown stereochemical structure of kotalanol, the naturally occurring seven-carbon chain-extended analogue of salacinol. The target zwitterionic compounds were synthesized by means of nucleophilic attack of the PMB-protected 1,4-anhydro-4-thio- d-arabinitols at the least hindered carbon atom of two 1,3-cyclic sulfates differing in stereochemistry at only one stereogenic center. The desired cyclic sulfates were synthesized starting from d-glucose via Wittig olefination and Sharpless asymmetric dihydroxylation. Deprotection of the coupled products by using a two-step sequence afforded two sulfonium sulfates. Optical rotation data for one of our compounds indicated a correspondence with that reported for kotalanol. However, comparison of (1)H and (13)C NMR spectral data of the synthetic compounds with those of kotalanol indicated discrepancies. The collective data from this and published work were used to propose a tentative structure for the naturally occurring compound, kotalanol. Comparison of physical data of previously synthesized analogues with those for the recently isolated six-carbon chain analogue, ponkoranol or reticulanol, also led to elucidation of this structure. Interestingly, both our compounds inhibited recombinant human maltase glucoamylase (MGA), as expected from our previous structure activity studies of lower homologues, with K i values of 0.13 +/- 0.02 and 0.10 +/- 0.02 microM.
本文描述了1,4-脱水-4-硫代-d-阿拉伯糖醇的新型七碳链延长锍盐的合成,这些化合物是天然存在的糖苷酶抑制剂萨拉辛醇的类似物。这些化合物是根据萨拉辛醇链延长类似物的构效关系数据设计的,目的是确定迄今未知的科他那醇的立体化学结构,科他那醇是天然存在的萨拉辛醇的七碳链延长类似物。目标两性离子化合物是通过PMB保护的1,4-脱水-4-硫代-d-阿拉伯糖醇对两种仅在一个立体中心的立体化学不同的1,3-环硫酸酯的位阻最小的碳原子进行亲核进攻而合成的。所需的环硫酸酯是从d-葡萄糖出发,通过维蒂希烯烃化反应和夏普莱斯不对称双羟基化反应合成的。通过两步序列对偶联产物进行脱保护,得到了两种硫酸锍盐。我们其中一种化合物的旋光数据表明与报道的科他那醇的数据一致。然而,合成化合物的(1)H和(13)C NMR光谱数据与科他那醇的光谱数据比较表明存在差异。结合本研究和已发表工作的数据,提出了天然存在的化合物科他那醇的暂定结构。将先前合成的类似物的物理数据与最近分离的六碳链类似物蓬科拉醇或网枝醇的物理数据进行比较,也有助于阐明该结构。有趣的是,正如我们之前对较低同系物的构效关系研究所预期的那样,我们的两种化合物都抑制重组人麦芽糖酶葡糖淀粉酶(MGA),其K i值分别为0.13±0.02和0.10±0.02 microM。