Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands.
Institute for Molecules and Materials, FELIX Laboratory, Radboud University, Toernooiveld 7, 6525 ED Nijmegen, The Netherlands.
J Org Chem. 2022 Jul 15;87(14):9139-9147. doi: 10.1021/acs.joc.2c00808. Epub 2022 Jun 24.
The stereoselective introduction of glycosidic bonds is of paramount importance to oligosaccharide synthesis. Among the various chemical strategies to steer stereoselectivity, participation by either neighboring or distal acyl groups is used particularly often. Recently, the use of the 2,2-dimethyl-2-(-nitrophenyl)acetyl (DMNPA) protection group was shown to offer enhanced stereoselective steering compared to other acyl groups. Here, we investigate the origin of the stereoselectivity induced by the DMNPA group through systematic glycosylation reactions and infrared ion spectroscopy (IRIS) combined with techniques such as isotopic labeling of the anomeric center and isomer population analysis. Our study indicates that the origin of the DMNPA stereoselectivity does not lie in the direct participation of the nitro moiety but in the formation of a dioxolenium ion that is strongly stabilized by the nitro group.
糖基键的立体选择性引入对于寡糖合成至关重要。在引导立体选择性的各种化学策略中,邻位或远端酰基的参与尤其常用。最近,使用 2,2-二甲基-2-(-硝基苯基)乙酰基(DMNPA)保护基被证明比其他酰基提供了增强的立体选择性引导。在这里,我们通过系统的糖苷化反应和红外离子光谱(IRIS)结合对糖基化反应进行研究,包括对端基碳原子的同位素标记和异构体分布分析,研究了 DMNPA 基团诱导立体选择性的起源。我们的研究表明,DMNPA 立体选择性的起源不在于硝基部分的直接参与,而在于形成一种二氧戊环正离子,其强烈受到硝基的稳定。