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2-脱氧和 2,6-二脱氧糖基溴化物作为合成β-2-脱氧和β-2,6-二脱氧糖苷的供体的范围和局限性。

Scope and limitations of 2-deoxy- and 2,6-dideoxyglycosyl bromides as donors for the synthesis of β-2-deoxy- and β-2,6-dideoxyglycosides.

机构信息

Department of Chemistry, Yale University , New Haven, Connecticut 06520, United States.

出版信息

Org Lett. 2014 May 16;16(10):2776-9. doi: 10.1021/ol501101f. Epub 2014 May 1.

Abstract

It is shown that 2-deoxy- and 2,6-dideoxyglycosyl bromides can be prepared in high yield (72-94%) and engaged in glycosylation reactions with β:α selectivities ≥6:1. Yields of product are 44-90%. Fully armed 2-deoxyglycoside donors are viable, while 2,6-dideoxyglycosides require one electron-withdrawing substituent for high efficiency and β-selectivity. Equatorial C-3 ester protecting groups decrease β-selectivity, and donors bearing an axial C-3 substituent are not suitable. The method is compatible with azide-containing donors and acid-sensitive functional groups.

摘要

研究表明,2-脱氧和 2,6-二脱氧糖基溴化物可以高产率(72-94%)制备,并以β:α选择性≥6:1进行糖苷化反应。产物的产率为 44-90%。完全武装的 2-脱氧糖苷供体是可行的,而 2,6-二脱氧糖苷需要一个吸电子取代基才能实现高效率和β选择性。赤道 C-3 酯保护基降低了β选择性,并且带有轴向 C-3 取代基的供体不适用。该方法与含叠氮化物的供体和酸敏感官能团兼容。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/463a/4033630/9f37b64e8551/ol-2014-01101f_0004.jpg

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