State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, Xue Yuan Road No. 38, Beijing 100191, China.
Nat Commun. 2017 Mar 16;8:14851. doi: 10.1038/ncomms14851.
Carbohydrates are diverse bio-macromolecules with highly complex structures that are involved in numerous biological processes. Well-defined carbohydrates obtained by chemical synthesis are essential to the understanding of their functions. However, synthesis of carbohydrates is greatly hampered by its insufficient efficiency. So far, assembly of long carbohydrate chains remains one of the most challenging tasks for synthetic chemists. Here we describe a highly efficient assembly of a 92-mer polysaccharide by the preactivation-based one-pot glycosylation protocol. Several linear and branched oligosaccharide/polysaccharide fragments ranging from 5-mer to 31-mer in length have been rapidly constructed in one-pot manner, which enables the first total synthesis of a biologically important mycobacterial arabinogalactan through a highly convergent [31+31+30] coupling reaction. Our results show that the preactivation-based one-pot glycosylation protocol may provide access to the construction of long and complicated carbohydrate chains.
碳水化合物是具有高度复杂结构的多样生物大分子,参与许多生物过程。通过化学合成获得的结构明确的碳水化合物对于理解其功能至关重要。然而,碳水化合物的合成受到其效率不足的极大阻碍。到目前为止,长链碳水化合物的组装仍然是合成化学家面临的最具挑战性的任务之一。在这里,我们描述了通过基于预激活的一锅法糖苷化方案高效组装 92 聚体多糖。通过一锅法快速构建了长度从 5 聚体到 31 聚体的几种线性和支化寡糖/多糖片段,这使得通过高度收敛的 [31+31+30] 偶联反应首次对具有生物学重要性的分枝杆菌阿拉伯半乳聚糖进行了全合成。我们的结果表明,基于预激活的一锅法糖苷化方案可能为构建长而复杂的碳水化合物链提供了途径。