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C-糖基氨基酸通过外糖的硼氢化-交叉偶联反应及其在自动化固相合成中的应用。

C-Glycosyl amino acids through hydroboration-cross-coupling of exo-glycals and their application in automated solid-phase synthesis.

机构信息

Institut für Organische Chemie, Johannes Gutenberg-Universität Mainz, Duesbergweg 10-14, 55128 Mainz, Germany.

出版信息

Chemistry. 2013 May 27;19(22):7020-41. doi: 10.1002/chem.201300150. Epub 2013 Mar 28.

Abstract

O-Glycosylation is one of the most important post-translational modifications of proteins. The attachment of carbohydrates to the peptide backbone influences the conformation as well as the solubility of the conjugates and can even be essential for binding to specific ligands in cell-cell interactions or for active transport over membranes. This makes glycopeptides an interesting class of compounds for medical applications. To enhance the long-term availability of these molecules in vivo, the stabilization of the glycosidic bond between the amino acid residue and the carbohydrate is of interest. The described modular approach affords β-linked C-glycosyl amino acids by a sequence of Petasis olefination of glyconolactones, stereoselective hydroboration and a mild B-alkyl-Suzuki coupling reaction. The coupling products were transformed to C-glycosyl amino acid building-blocks suitable for solid-phase synthesis and successfully incorporated into a partial sequence of the tumor-associated MUC1-glycopeptide. The resulting C-glycopeptides are candidates for the development of long-term stable mimics of O-glycopeptide vaccines.

摘要

O-糖基化是蛋白质最重要的翻译后修饰之一。碳水化合物与肽主链的连接影响着缀合物的构象和溶解度,甚至对细胞间相互作用中与特定配体的结合或跨膜主动运输是必需的。这使得糖肽成为一类具有医学应用前景的化合物。为了提高这些分子在体内的长期可用性,稳定氨基酸残基和碳水化合物之间的糖苷键是很有意义的。所描述的模块化方法通过糖烯醇内酯的 Petasis 烯烃化、立体选择性硼氢化和温和的 B-烷基-Suzuki 偶联反应,提供了β-连接的 C-糖基氨基酸。偶联产物被转化为适用于固相合成的 C-糖基氨基酸砌块,并成功地整合到肿瘤相关的 MUC1-糖肽的部分序列中。所得的 C-糖肽是开发 O-糖肽疫苗的长期稳定模拟物的候选物。

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