Li Zhitao, Gildersleeve Jeffrey C
Laboratory of Medicinal Chemistry, Center for Cancer Research, NCI-Frederick, 376 Boyles Street, Building 376, Room 109, Frederick, Maryland 21702, USA.
J Am Chem Soc. 2006 Sep 6;128(35):11612-9. doi: 10.1021/ja063247q.
Thioglycosides have been employed extensively for the synthesis of complex oligosaccharides, carbohydrate libraries, and mimetics of O-glycosides. While very useful, aglycon transfer is a problematic side reaction with thioglycosides. In this paper, a series of mechanistic studies are described. The aglycon transfer process is shown to affect both armed and disarmed thioglycosides, cause anomerization of the carbon-sulfur bond of a thioglycoside, and destroy the product of a glycosylation reaction. The results indicate that the aglycon transfer process can be a major problem for a wide range of thioglycosides. This side reaction is especially important to consider when carrying out complex reactions such as solid-phase glycosylations, one-pot or orthogonal multicomponent glycosylations, and construction of carbohydrate libraries. To prevent transfer, a number of modified aglycons were examined. The 2,6-dimethylphenyl (DMP) aglycon was found to effectively block transfer in a variety of model studies and glycosylation reactions. The DMP group can be installed in one step from a commercially available thiol (2,6-dimethylthiophenol) and is useable as a glycosyl donor. On the basis of these features, the DMP group is proposed as a convenient and improved aglycon for thioglycosides.
硫代糖苷已被广泛用于合成复杂的寡糖、碳水化合物文库和O-糖苷模拟物。虽然硫代糖苷非常有用,但糖苷配基转移是其一个有问题的副反应。本文描述了一系列机理研究。结果表明,糖苷配基转移过程会影响活化和钝化硫代糖苷,导致硫代糖苷碳-硫键的异头化,并破坏糖基化反应的产物。结果表明,糖苷配基转移过程可能是多种硫代糖苷面临的一个主要问题。在进行复杂反应时,如固相糖基化、一锅法或正交多组分糖基化以及碳水化合物文库的构建,尤其需要考虑这种副反应。为了防止转移,研究了多种修饰的糖苷配基。在各种模型研究和糖基化反应中,发现2,6-二甲基苯基(DMP)糖苷配基能有效阻止转移。DMP基团可以从市售硫醇(2,6-二甲基硫酚)一步安装,并且可用作糖基供体。基于这些特性,DMP基团被提议作为一种方便且改良的硫代糖苷糖苷配基。