...
首页> 外文期刊>Current organic chemistry >Non-conventional glycosidic linkages: Syntheses and structures of thiooligosaccharides and carbohydrates with three-bond glycosidic connections
【24h】

Non-conventional glycosidic linkages: Syntheses and structures of thiooligosaccharides and carbohydrates with three-bond glycosidic connections

机译:非常规糖苷键:具有三键糖苷连接的硫寡糖和碳水化合物的合成和结构

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Thiooligosaccharides display inhibitory activity against glycoside hydrolases and they constitute a valuable tool for structural biology. The construction of the interglycosidic linkage, in which the oxygen atom is replaced by sulfur, usually involves one of the following reactions: i) nucleophilic displacement of good leaving groups in a carbohydrate moiety by a sugar thiol, ii) Michael and Michael-type additions of sugar thiols to unsaturated acceptors, iii) ring-opening of aziridines and oxiranes by thiosugars, iv) enzyme-catalyzed couplings of thiosugar moieties. The application of these reactions for the syntheses of thiooligosaccharides are surveyed, and the biological activities of the resulting products briefly described. Carbohydrate structures incorporating three-bond glycosidic linkages with two heteroatoms are uncommon in Nature. The -N-O- interglycosidic bond in the oligosaccharide part of enediyne antibiotics is partly responsible for their potent antitumor activities. The disulfide bond which plays an essential role in proteins has recently been introduced as an interglycosidic connecting motif. The sulfenamide functionality is the sulfur analog of the hydroxylamine type glycosidic linkages in calicheamicins. Novel glycosylation strategies have recently been developed by taking advantage of unconventional, three-bond glycosidic linkages to construct neoglycoproteins and other glycoconjugates which are increasingly important tools in glycobiology and drug discovery. To explore conformational preferences and molecular flexibility in these structures NMR spectroscopy, chiroptical methods and X-ray crystallography are being used, supplemented by molecular modelling calculations. The structural features will be briefly discussed with relevance to biological interactions such as enzyme binding.
机译:硫寡糖显示出对糖苷水解酶的抑制活性,它们构成了结构生物学的重要工具。糖苷键间的连接(其中氧原子被硫取代)的构建通常涉及以下反应之一:i)糖硫醇对碳水化合物部分中良好离去基团的亲核取代,ii)Michael和Michael型加成糖硫醇与不饱和受体的结合; iii)硫糖打开氮丙啶和环氧乙烷的开环,iv)硫糖部分的酶催化偶联。综述了这些反应在硫代寡糖合成中的应用,并简要描述了所得产物的生物活性。在自然界中,结合有两个杂原子的三键糖苷键的碳水化合物结构并不常见。烯二炔抗生素的寡糖部分中的-N-O-糖苷间键部分负责其有效的抗肿瘤活性。最近在蛋白质中起重要作用的二硫键已被引入为糖苷间连接基序。亚磺酰胺官能团是加利车霉素中羟胺型糖苷键的硫类似物。最近,通过利用非常规的三键糖苷键来构建新糖蛋白和其他糖缀合物,开发了新的糖基化策略,新糖蛋白和其他糖缀合物在糖生物学和药物发现中越来越重要。为了在这些结构中探索构象偏好和分子柔性,使用了核磁共振波谱法和X射线晶体学,并辅以分子模型计算。结构特征将与诸如酶结合之类的生物相互作用有关地进行简要讨论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号