N. D. Zelinsky Institute of Organic Chemistry of the Russian Academy of Sciences, Leninsky prosp. 47, 119991, Moscow, Russian Federation.
N. D. Zelinsky Institute of Organic Chemistry of the Russian Academy of Sciences, Leninsky prosp. 47, 119991, Moscow, Russian Federation.
Carbohydr Res. 2024 Oct;544:109252. doi: 10.1016/j.carres.2024.109252. Epub 2024 Aug 30.
Stereocontrolled 1,2-trans-α-arabinofuranosylation using polysilylated mono- and disaccharide glycosyl donors was investigated. A complete α-stereoselectivity of 1,2-trans-arabinofuranosylation was found for Ara-β-(1 → 2)-Ara disaccharide glycosyl donors containing five triisopropylsilyl (TIPS) groups with arylthiol (1) (as shown in our previous publications) or N-phenyltrifluoroacetimidoyl (2) (this work) leaving groups. Conversely, in case of monosaccharide thioglycosides polysilylated with acyclic silyl groups (TIPS, TBDPS), stereoselectivity of glycosylation was lower (α:β = 7-8:1), although the desired α-isomer still dominated. Disaccharide glycosyl donor 2 was successfully used in the synthesis of linear α-(1 → 5)-, β-(1 → 2)-linked hexaarabinofuranoside useful for further preparation of conjugates thereof as antigens valuable for the diagnosis of mycobacterioses.
使用多硅化的单糖和二糖糖基供体进行立体控制的 1,2-顺式-α-阿拉伯呋喃糖苷化反应。研究发现,含有五个三异丙基甲硅烷基 (TIPS) 基团的 Ara-β-(1 → 2)-Ara 二糖糖基供体(如我们之前的出版物所述)或 N-苯基三氟乙酰亚胺基 (2)(本工作)离去基团,具有完全的 1,2-顺式-α-阿拉伯呋喃糖苷化的立体选择性。相反,在具有非环状硅基 (TIPS、TBDPS) 的单糖硫代糖苷的情况下,糖苷化的立体选择性较低(α:β = 7-8:1),尽管所需的 α-异构体仍然占主导地位。二糖糖基供体 2 成功地用于合成线性α-(1 → 5)-、β-(1 → 2)-连接的六阿拉伯呋喃糖苷,这对于进一步制备其作为诊断分枝杆菌病有价值的抗原的缀合物很有用。