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6-O-取代的N-二甲基马来酰基保护的D-葡萄糖胺受体的α和β异头物糖基化反应中的O-3/O-4区域选择性差异

Differential O-3/O-4 regioselectivity in the glycosylation of alpha and beta anomers of 6-O-substituted N-dimethylmaleoyl-protected D-glucosamine acceptors.

作者信息

Bohn María L, Colombo María I, Pisano Pablo L, Stortz Carlos A, Rúveda Edmundo A

机构信息

Instituto de Química Orgánica y de Síntesis (CONICET-UNR), Facultad de Ciencias Bioquímicas y Farmacéuticas, Suipacha 531, 2000 Rosario, Argentina.

出版信息

Carbohydr Res. 2007 Dec 10;342(17):2522-36. doi: 10.1016/j.carres.2007.08.006. Epub 2007 Aug 23.

Abstract

An assessment of the relative O-3/O-4 reactivities of both methyl alpha- and beta-d-glycosides of N-dimethylmaleoyl (DMM) d-glucosamine acceptors protected at O-6 with benzoyl (Bz), benzyl (Bn), and tert-butyldiphenylsilyl (TBDPS) groups is presented using per-O-benzoylated beta-d-galactofuranosyl and per-O-acetylated alpha-d-galactopyranosyl trichloroacetimidates as glycosyl donors. Using the former donor, the alpha anomer of the 6-O-benzoylated compound gave exclusive substitution at O-3, whereas the other two compounds with alpha-configuration kept this site as preferential. The beta anomer of the 6-O-benzoylated compound gave the same amounts of reaction products on O-3 and O-4, whereas the other beta analogs carried a more reactive O-4. The same reactions were carried out using as donor the less-reactive per-O-acetylated alpha-d-galactopyranosyl trichloroacetimidate. Although the same trend was found to occur, the O-4 was always relatively more reactive with the pyranosyl donor than with the furanosyl donor, when keeping the remaining factors constant. Furthermore, the beta anomers of the acceptor gave almost exclusive substitution at O-4. These observations confirm and extend the utility of these 'matching' donor and acceptor reactivities.

摘要

本文使用全 -O -苯甲酰化的β -D -半乳呋喃糖基三氯乙酰亚胺酯和全 -O -乙酰化的α -D -吡喃半乳糖基三氯乙酰亚胺酯作为糖基供体,对在O -6位被苯甲酰基(Bz)、苄基(Bn)和叔丁基二苯基硅基(TBDPS)基团保护的N -二甲基马来酰基(DMM) -D -葡糖胺受体的甲基α -和β -D -糖苷的相对O -3/O -4反应活性进行了评估。使用前一种供体时,6 -O -苯甲酰化化合物的α异头物在O -3位发生专一性取代,而另外两种具有α构型的化合物则优先保留该位点。6 -O -苯甲酰化化合物的β异头物在O -3和O -4位产生等量的反应产物,而其他β类似物的O -4位反应性更高。使用反应活性较低的全 -O -乙酰化α -D -吡喃半乳糖基三氯乙酰亚胺酯作为供体进行相同的反应。尽管发现了相同的趋势,但在保持其他因素不变的情况下,O -4与吡喃糖基供体反应时总是比与呋喃糖基供体反应时相对更具反应活性。此外,受体的β异头物在O -4位几乎发生专一性取代。这些观察结果证实并扩展了这些“匹配”的供体和受体反应活性的实用性。

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