Alberta Glycomics Centre, Department of Chemistry, University of Calgary , Calgary, Alberta T2N 1N4, Canada.
J Org Chem. 2017 Sep 15;82(18):9662-9674. doi: 10.1021/acs.joc.7b01752. Epub 2017 Aug 24.
The 6-deoxy-β-d-ido-heptopyranoside related to the capsular polysaccharides of C. jejuni HS:4 is very remarkable, owing to the unique, multifaceted structural features that have been combined into one molecule, which include (1) the rare ido-configuration, (2) the unusual 7-carbon backbone, and (3) the challenging β-(1→2)-cis-anomeric configuration. Two distinct strategies toward the total synthesis of this interesting target are reported. The first involved establishment of the β-d-idopyranosyl configuration from β-d-galactopyranosides, prior to a C-6-homologation extending the d-hexose to the desired 6-deoxy-d-heptose. However, this approach encountered difficulties due to the significantly reduced reactivity of the 6-position of the β-d-idopyranosides, so instead a second strategy was employed, which involved first carrying out a 6-homologation on the less flexible d-galactopyranose, followed by a very successful conversion to the desired β-d-ido-configuration found in the target heptopyranoside (2). This report is the first successful synthesis of the 6-deoxy-β-d-ido-heptopyranoside, which could possess interesting immunological properties.
与 C. jejuni HS:4 荚膜多糖有关的 6-去氧-β-d-艾杜吡喃糖苷非常显著,这归因于独特的、多方面的结构特征被组合到一个分子中,包括 (1) 罕见的艾杜构型,(2) 不寻常的 7-碳主链,和 (3) 具有挑战性的 β-(1→2)-顺式-端基构型。本文报道了两种针对该有趣目标物的全合成的不同策略。第一种方法涉及从β-d-半乳糖吡喃糖苷建立β-d-艾杜吡喃糖构型,然后在 C-6 同系化过程中,将 d-己糖扩展到所需的 6-去氧-d-庚糖。然而,由于β-d-艾杜吡喃糖苷的 6-位的反应性显著降低,该方法遇到了困难,因此转而采用第二种策略,该策略首先在不太灵活的 d-半乳糖吡喃糖上进行 6-同系化,然后非常成功地转化为目标庚吡喃糖苷中存在的所需的β-d-艾杜构型 (2)。这是首次成功合成 6-去氧-β-d-艾杜吡喃糖苷,它可能具有有趣的免疫学特性。