Department of Chemistry and Biochemistry, University of Missouri-St. Louis, One University Boulevard, St. Louis, Missouri, 63121, USA.
Chemistry. 2020 Mar 2;26(13):2938-2946. doi: 10.1002/chem.201905278. Epub 2020 Feb 18.
Excellent β-stereoselectivity for the glycosylation with glucosyl donors equipped with the 3-O-picoloyl (Pico) group, without the use of participating group, was achieved in the presence of NIS/excess TfOH promoter system. A complete investigation of the scope of this reaction was performed, revealing all important attributes of successful glycosylation. While altering the halogen source was tolerated, substitution of the triflate anion resulted in complete loss of stereoselectivity. Protonation of the Pico group was determined to be crucial in this reaction. The stability or extent of the protonated pyridine ring was also found to be another important key factor in obtaining high stereoselectivity. The nucleophilicity of the acceptor was found to be proportional to the stereoselectivity obtained, suggesting an S 2-like mechanism.
在 NIS/过量 TfOH 促进体系的存在下,用配备 3-O- 吡啶甲酰基(Pico)基团的葡萄糖供体进行糖基化反应,可实现出色的 β-立体选择性,无需使用参与基团。对该反应的范围进行了全面的研究,揭示了成功糖基化的所有重要属性。虽然可以容忍改变卤源,但三氟甲磺酸根阴离子的取代导致立体选择性完全丧失。确定 Pico 基团的质子化在该反应中至关重要。还发现吡啶环的质子化的稳定性或程度也是获得高立体选择性的另一个重要关键因素。受体的亲核性与获得的立体选择性成正比,表明存在 S2 样机制。