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4'-脱氧戊烯糖基二糖的合成与反应活性

Synthesis and reactivity of 4'-deoxypentenosyl disaccharides.

作者信息

Padungros Panuwat, Fan Ren-Hua, Casselman Matthew D, Cheng Gang, Khatri Hari R, Wei Alexander

机构信息

Department of Chemistry, Purdue University , 560 Oval Drive, West Lafayette, Indiana 47907-2084, United States.

出版信息

J Org Chem. 2014 Jun 6;79(11):4878-91. doi: 10.1021/jo500449h. Epub 2014 May 12.

Abstract

4-Deoxypentenosides (4-DPs) are versatile synthons for rare or higher-order pyranosides, and they provide an entry for structural diversification at the C5 position. Previous studies have shown that 4-DPs undergo stereocontrolled DMDO oxidation; subsequent epoxide ring-openings with various nucleophiles can proceed with both anti or syn selectivity. Here, we report the synthesis of α- and β-linked 4'-deoxypentenosyl (4'-DP) disaccharides, and we investigate their post-glycosylational C5' additions using the DMDO oxidation/ring-opening sequence. The α-linked 4'-DP disaccharides were synthesized by coupling thiophenyl 4-DP donors with glycosyl acceptors using BSP/Tf2O activation, whereas β-linked 4'-DP disaccharides were generated by the decarboxylative elimination of glucuronyl disaccharides under microwave conditions. Both α- and β-linked 4'-DP disaccharides could be epoxidized with high stereoselectivity using DMDO. In some cases, the α-epoxypentenosides could be successfully converted into terminal l-iduronic acids via the syn addition of 2-furylzinc bromide. These studies support a novel approach to oligosaccharide synthesis, in which the stereochemical configuration of the terminal 4'-DP unit is established at a post-glycosylative stage.

摘要

4-脱氧戊烯糖苷(4-DP)是用于合成稀有或高阶吡喃糖苷的通用合成子,它们为在C5位进行结构多样化提供了途径。先前的研究表明,4-DP可进行立体控制的二甲基二氧杂环丙烷(DMDO)氧化;随后与各种亲核试剂进行的环氧开环反应可以以反式或顺式选择性进行。在此,我们报道了α-和β-连接的4'-脱氧戊烯糖基(4'-DP)二糖的合成,并使用DMDO氧化/开环序列研究了它们在糖基化后的C5'加成反应。α-连接的4'-DP二糖是通过使用BSP/Tf2O活化将硫代苯基4-DP供体与糖基受体偶联合成的,而β-连接的4'-DP二糖是在微波条件下通过葡糖醛酸二糖的脱羧消除反应生成的。使用DMDO可以以高立体选择性将α-和β-连接的4'-DP二糖环氧化。在某些情况下,α-环氧戊烯糖苷可以通过2-呋喃基溴化锌的顺式加成成功转化为末端l-艾杜糖醛酸。这些研究支持了一种寡糖合成的新方法,其中末端4'-DP单元的立体化学构型是在糖基化后阶段确定的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/889d/4059249/2c615eb38a81/jo-2014-00449h_0002.jpg

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