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The amide group in N-acetylglucosamine glycosyl acceptors affects glycosylation outcome

机译:N-乙酰氨基葡糖糖基受体中的酰胺基影响糖基化结果

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Glycosylation of a disaccharide containing N-acetylglucosamine with rhamnosyl and mannosyl trichloracetimidates under triethysilyl triflate catalysis led to the competitive formation of glycosyl imidates. While the rhamnosyl imidate could be rearranged to the thermodynamically favored trisaccharide, the mannosyl analogue was resistant to rearrangement. Glycosylation with perbenzylated thiorhamnosides activated with methyl triflate (MeOTf) gave the trisaccharide as well as the methyl imidate trisaccharide. The less reactive alpha-thioethyl donor led to a higher relative amount of methyl imidate trisaccharide to trisaccharide than the more reactive beta-thioglycoside. When using a more reactive thioethyl fucoside only the trisaccharide was obtained. Interestingly, the acceptor treated with MeOTf gave the N-methyl imidate that could be easily rhamnosylated and subsequently converted to the N-acetamido trisaccharide. This strategy to glycosylate O-4 of N-acetylglucosamine is under further investigation. Alternatively, bis-N-acetylation of the glucosamine prevented the formation of imidates and allowed the efficient synthesis of two Lewis A trisaccharide analogues.
机译:在三乙基甲硅烷基三氟甲磺酸酯催化下,含有N-乙酰氨基葡糖的二糖与鼠李糖基和甘露糖基三氯乙酰亚胺酸酯的糖基化导致竞争性形成糖基酰亚胺。虽然可将鼠李糖亚氨基鼠李糖苷重排成热力学上有利的三糖,但甘露糖基类似物具有抗重排性。用三氟甲磺酸甲酯(MeOTf)活化的过苄基硫代鼠李糖苷进行糖基化,得到三糖以及亚氨酸甲酯三糖。反应性较低的α-硫代乙基供体比反应性较高的β-硫代糖苷导致亚氨酸甲酯三糖相对于三糖的相对量更高。当使用反应性更高的硫代乙基葡糖苷时,仅获得三糖。有趣的是,用MeOTf处理的受体得到了N-甲基亚氨酸酯,其易于鼠李糖基化,随后转化为N-乙酰氨基三糖。 N-乙酰氨基葡萄糖的O-4糖基化的这一策略正在进一步研究中。或者,葡糖胺的双-N-乙酰化阻止了酰亚胺的形成,并允许有效合成两种路易斯A三糖类似物。

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