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中国药学(英文版) ›› 2017, Vol. 26 ›› Issue (3): 235-236.

• 【其 它】 • 上一篇    

叶新山教授研究团队在多糖人工合成领域获重大突破

叶新山课题组   

  1. 北京大学医学部 药学院 天然药物及仿生药物国家重点实验室, 北京 100191
  • 收稿日期:2017-03-15 修回日期:2017-03-18 出版日期:2017-03-30 发布日期:2017-03-20

Prof. Xinshan Ye’s team makes a breakthrough in the artificial synthesis of polysaccharides

Xinshan Ye’s team   

  1. State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University Health Science Center, Beijing 100191, China
  • Received:2017-03-15 Revised:2017-03-18 Online:2017-03-30 Published:2017-03-20

摘要:

我院叶新山教授研究团队经过多年的研究积累, 近期在多糖人工合成的难题上取得了突破性进展。他们选取阿拉伯半乳聚糖这个多糖为目标分子。该分子由一条半乳聚糖链(A链)和两条紧密靠近的阿拉伯聚糖链(B链)所组成, 具有高度分支的结构。研究人员从简单的单糖原料出发, 采用他们前期所发展的基于糖基供体“预活化”的一釜寡糖合成策略, 以克级规模实现了寡糖链的大量制备; 并且利用构象受限的糖基供体高立体选择性地构建1,2-顺式糖苷键; 随后再次使用“预活化”一釜寡糖合成策略分别完成了两条多糖链(A链和B链)的快速组装; 最后采用他们自己发展的糖基化反应偶联剂, 经[31+31+30]糖基化反应, 顺利实现了高度分支化、由92个单糖单元所组成的阿拉伯半乳聚糖的首次全合成。

关键词: 叶新山教授, 多糖

Abstract:

A team led by Prof. Xinshan Ye (the associate editor of this journal) at Peking University, after many years of research, has recently achieved a major breakthrough in the field of polysaccharide synthesis. Arabinogalactan was chosen as the target molecule for their research. This polysaccharide molecule is composed of a linear galactan chain (chain A) linked with two arabinan chains (chain B), forming a highly branched structure. Using simple monosaccharides as starting materials, researchers were able to produce oligosaccharide chains on the gram scale by the glycosyl donor preactivation-based one-pot oligosaccharide synthesis strategy they previously developed. The cis-1,2-glycosidic bonds were built in a highly stereoselective manner through the conformationally-constrained glycosyl donor. The one-pot protocol was used again for the rapid construction of the two chains (chain A and chain B). Finally, these chains were brought together with a [31+31+30] coupling reaction via the glycosylation promoter they developed previously, thus achieving the total synthesis of the highly branched 92-mer arabinogalactan for the first time.

Key words: Xinshan Ye&rsquo, s team,  , Polysaccharides

Supporting: