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Thermal effect in beta-selective glycosylation reactions using glycosyl iodides

机译:使用糖基碘的β选择性糖基化反应中的热效应

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摘要

The unique reactivity of glycosyl iodides and the fact that they react under neutral conditions makes them the donors of choice in our glycosylation strategies. Glycosyl iodides are generated in situ from either the anomeric acetate or the anomeric silylated derivative yielding the alpha-iodide. In the reported glycosylation reactions, protected glucosyl, galactosyl, and mannosyl iodides were reacted with trimethylene oxide as the acceptor, yielding the beta-anomer as the major product. In the absence of neighboring group participation, beta-selectivity is thought to arise from nucleophilic displacement of the alpha-iodide in an S(N)2-like mechanism, while the alpha-product is the result of nucleophilic attack on the beta-iodide. In this study, increased beta-selectivity using an inverse thermal effect is demonstrated. (c) 2005 Elsevier Ltd. All rights reserved.
机译:糖基碘化物的独特反应性以及它们在中性条件下反应的事实使它们成为我们糖基化策略的首选供体。糖基碘化物是从异头乙酸盐或异头甲硅烷基化衍生物中原位产生的,产生α-碘化物。在报道的糖基化反应中,使受保护的葡萄糖基,半乳糖基和甘露糖基碘化物与环氧丙烷作为受体反应,产生β-端基异构体作为主要产物。在没有邻近基团参与的情况下,β-选择性被认为是由S(N)2-类机制中的α-碘的亲核取代引起的,而α-产物是对β-碘的亲核攻击的结果。 。在这项研究中,证明了利用逆热效应提高了β选择性。 (c)2005 Elsevier Ltd.保留所有权利。

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