Biofunctional Nanomaterials Unit, CICbiomaGUNE, Paseo Miramon 182, 20009 San Sebastian, Spain.
J Org Chem. 2013 Jul 19;78(14):6911-34. doi: 10.1021/jo400467g. Epub 2013 Jul 5.
Glycan arrays have been established as the premier technical platform for assessing the specificity of carbohydrate binding proteins, an important step in functional glycomics research. Access to large libraries of well-characterized oligosaccharides remains a major bottleneck of glycan array research, and this is particularly true for glycosaminoglycans (GAGs), a class of linear sulfated polysaccharides which are present on most animal cells. Solid-supported synthesis is a potentially powerful tool for the accelerated synthesis of relevant GAG libraries with variations in glycan sequence and sulfation pattern. We have evaluated a series of iduronic acid and idose donors, including a couple of novel n-pentenyl orthoester donors in the sequential assembly of heparan sulfate precursors from monosaccharide building blocks in solution and on a polystyrene resin. The systematic study of donor and acceptor performance up to the trisaccharide stage in solution and on the solid support have resulted in a general strategy for the solid-phase assembly of this important class of glycans.
糖链芯片已被确立为评估糖结合蛋白特异性的主要技术平台,这是功能糖组学研究的重要步骤。获得大量经过良好表征的寡糖库仍然是糖链芯片研究的主要瓶颈,对于糖胺聚糖(GAGs)更是如此,GAGs 是一类线性硫酸化多糖,存在于大多数动物细胞上。固载合成是加速合成具有糖链序列和硫酸化模式变化的相关 GAG 文库的一种潜在强大工具。我们评估了一系列的艾杜糖醛酸和艾杜糖供体,包括在溶液中和聚苯乙烯树脂上从单糖砌块顺序组装肝素硫酸盐前体时使用的一对新型戊烯基邻苯二甲酸酯供体。在溶液中和固相中进行的从二糖到三糖阶段的供体和受体性能的系统研究,产生了用于固相组装这一重要聚糖类的通用策略。