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首页> 外文期刊>Chemistry: A European journal >Combinatorial Synthesis of an Oligosaccharide Library by Using beta-Bromoglycoside-Mediated Iterative Glycosylation of Selenoglycosides:Rapid Expansion of Molecular Diversity with Simple Building Blocks
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Combinatorial Synthesis of an Oligosaccharide Library by Using beta-Bromoglycoside-Mediated Iterative Glycosylation of Selenoglycosides:Rapid Expansion of Molecular Diversity with Simple Building Blocks

机译:通过使用β-溴糖苷介导的硒代糖苷的迭代糖基化的寡糖文库的组合合成:快速扩展分子多样性与简单的结构单元。

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摘要

A new method for constructing an oligosaccharide library composed of structurally defined oligosac-charides is presented based on an iterative glycosylation of selenoglycosides.Treatment of 2-acyl-protected selenoglycosides with bromine selectively generates beta-bromoglycosides,which serve as glycosyl cation equivalents in the oligosaccharide synthesis.Thus,the coupling of the bromoglycosides with another selenoglycoside affords the corresponding glycosylated selenoglycosides,which can be directly used to next glycosylation.The iteration of this sequence allows the synthesis of a variety of oligosaccharides including an elicitor active heptasaccharide.A characteristic feature of the iterative glycosylation is that glycosyl donors and acceptors with the same anomeric reactivity can be selectively coupled by activation of the glycosyl donor prior to coupling with the glycosyl acceptor.Therefore,same selenoglycosides can be used for both the glycosyl donors and the acceptors.This feature has been exemplified by a construction of an oligosaccharide library directed to elicitor-active oligosaccharides.The library composed of stereochemically defined oligoglucosides with considerable structural diversity can be constructed starting from simple selenoglycosides.
机译:基于硒代糖苷的迭代糖基化,提出了一种由结构定义的寡糖组成的寡糖文库的构建新方法,用溴处理2-酰基保护的硒代糖苷可选择性地生成β-溴代糖苷,可作为寡糖中的糖基阳离子等价物因此,将溴糖苷与另一种硒糖苷偶联可得到相应的糖基化硒糖苷,可将其直接用于下一个糖基化。此序列的迭代可合成包括激发子活性七糖在内的多种寡糖。迭代糖基化反应是,在与糖基受体偶联之前,可以通过活化糖基供体选择性地偶联糖基供体和具有相同端基反应性的受体。因此,相同的硒代糖苷可用于糖基供体和受体。已经以针对激发子活性寡糖的寡糖文库的构建为例。由立体化学定义的寡糖苷具有相当大的结构多样性的文库可以从简单的硒糖苷开始构建。

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