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Recent studies on reaction pathways and applications of sugar orthoesters in synthesis of oligosaccharides

机译:糖原酸酯在寡糖合成中的反应途径及其应用的最新研究

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Formation of sugar-sugar orthoesters consisting of a fully acylated mono- or disaccharide donor and a partially protected mono- or disaccharide acceptor is regioselective, and rearrangement of the orthoesters via RO-(orthoester)C bond cleavage gives a dioxolenium ion intermediate leading to 1,2-trans glycosidic linkage. The activity order of hydroxyl groups in the partially protected mannose and glucose acceptors is 6-OH > 3-OH > 2- or 4-OH. The coupling reactions with acylated glycosyl trichloroacetimidates as the donors usually give orthoesters as the intermediates specially when the coupling is carried out at slowed rates, and this is successfully used in regio- and stereoselective syntheses of oligosaccharides. Mannose and rhamnose orthoesters readily undergo O-2-(orthoester)C bond breaking, and this is used for synthesis of alpha-(1 -> 2)-linked oligosaccharides. (1 -> 3)-Glucosylation is special since the rearrangement of its sugar orthoester intermediates can occur with either RO-(orthoester)C bond cleavage with formation of the dioxolenium ion leading to 1,2-trans linkage, or C-1-O-1 bond cleavage leading to 1,2-cis linkage, and this is dependent upon the structures of donor and acceptor that compose the orthoester. (c) 2006 Elsevier Ltd. All rights reserved.
机译:由完全酰化的单糖或二糖供体和部分受保护的单糖或二糖受体组成的糖原酸酯的形成具有区域选择性,并且通过RO-(原酸酯)C键裂解进行的原酸酯重排产生了二恶唑鎓离子中间体,导致1 ,2-反式糖苷键。在部分保护的甘露糖和葡萄糖受体中羟基的活性顺序为6-OH> 3-OH> 2-或4-OH。特别是当以缓慢的速率进行偶联时,以酰化的糖基三氯乙酰基亚氨酸酯作为供体的偶联反应通常得到原酸酯作为中间体,这已成功地用于寡糖的区域和立体选择性合成中。甘露糖和鼠李糖原酸酯容易发生O-2-(原酸酯)C键断裂,这被用于合成α-(1→2)连接的寡糖。 (1-> 3)-葡萄糖基化是特殊的,因为它的糖原酸酯中间体的重排可以通过RO-(原酸酯)C键裂解形成二氧杂环丁烯离子形成,导致1,2-反式键或C-1- O-1键断裂导致1,2-顺式连接,这取决于组成原酸酯的供体和受体的结构。 (c)2006 Elsevier Ltd.保留所有权利。

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