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呋喃糖基氧化碳鎓离子构象能景观图作为研究2-叠氮基呋喃糖、2-氟呋喃糖和甲基呋喃糖基糖醛酸糖基化立体选择性的工具

Furanosyl Oxocarbenium Ion Conformational Energy Landscape Maps as a Tool to Study the Glycosylation Stereoselectivity of 2-Azidofuranoses, 2-Fluorofuranoses and Methyl Furanosyl Uronates.

作者信息

van der Vorm Stefan, Hansen Thomas, van Rijssel Erwin R, Dekkers Rolf, Madern Jerre M, Overkleeft Herman S, Filippov Dmitri V, van der Marel Gijsbert A, Codée Jeroen D C

机构信息

Leiden University, Leiden, The Netherlands.

出版信息

Chemistry. 2019 May 23;25(29):7149-7157. doi: 10.1002/chem.201900651. Epub 2019 Apr 17.

Abstract

The 3D shape of glycosyl oxocarbenium ions determines their stability and reactivity and the stereochemical course of S 1 reactions taking place on these reactive intermediates is dictated by the conformation of these species. The nature and configuration of functional groups on the carbohydrate ring affect the stability of glycosyl oxocarbenium ions and control the overall shape of the cations. We herein map the stereoelectronic substituent effects of the C2-azide, C2-fluoride and C4-carboxylic acid ester on the stability and reactivity of the complete suite of diastereoisomeric furanoses by using a combined computational and experimental approach. Surprisingly, all furanosyl donors studied react in a highly stereoselective manner to provide the 1,2-cis products, except for the reactions in the xylose series. The 1,2-cis selectivity for the ribo-, arabino- and lyxo-configured furanosides can be traced back to the lowest-energy E or E conformers of the intermediate oxocarbenium ions. The lack of selectivity for the xylosyl donors is related to the occurrence of oxocarbenium ions adopting other conformations.

摘要

糖基氧化碳鎓离子的三维形状决定了它们的稳定性和反应活性,并且在这些反应中间体上发生的S1反应的立体化学过程由这些物种的构象决定。碳水化合物环上官能团的性质和构型影响糖基氧化碳鎓离子的稳定性,并控制阳离子的整体形状。我们在此使用计算和实验相结合的方法,绘制了C2-叠氮化物、C2-氟化物和C4-羧酸酯对全套非对映异构呋喃糖的稳定性和反应活性的立体电子取代基效应。令人惊讶的是,除了木糖系列中的反应外,所有研究的呋喃糖基供体都以高度立体选择性的方式反应,生成1,2-顺式产物。核糖、阿拉伯糖和来苏糖构型的呋喃糖苷的1,2-顺式选择性可追溯到中间体氧化碳鎓离子的最低能量E或E构象。木糖基供体缺乏选择性与采用其他构象的氧化碳鎓离子的出现有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96d6/6563709/ab1b36d01890/CHEM-25-7149-g001.jpg

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