Department of Drug Sciences, University of Pavia, viale Taramelli 12, I-27100 Pavia, Italy.
Institut Parisien de Chimie Moléculaire, Sorbonne Université, CNRS, UMR 8232, 4 Place Jussieu, 75005 Paris, France.
Molecules. 2020 Dec 7;25(23):5764. doi: 10.3390/molecules25235764.
Regioselective deprotection of acetylated mannose-based mono- and disaccharides differently functionalized in anomeric position was achieved by enzymatic hydrolysis. lipase (CRL) and acetyl xylan esterase (AXE) were immobilized on octyl-Sepharose and glyoxyl-agarose, respectively. The regioselectivity of the biocatalysts was affected by the sugar structure and functionalization in anomeric position. Generally, CRL was able to catalyze regioselective deprotection of acetylated monosaccharides in C6 position. When acetylated disaccharides were used as substrates, AXE exhibited a marked preference for the C2, or C6 position when C2 was involved in the glycosidic bond. By selecting the best enzyme for each substrate in terms of activity and regioselectivity, we prepared a small library of differently monohydroxylated building blocks that could be used as intermediates for the synthesis of mannosylated glycoconjugate vaccines targeting mannose receptors of antigen presenting cells.
通过酶水解实现了在糖环位置不同功能化的乙酰化甘露糖单糖和二糖的区域选择性脱乙酰保护。脂肪酶 (CRL) 和乙酰木聚糖酯酶 (AXE) 分别固定在辛基琼脂糖和乙二醛琼脂糖上。生物催化剂的区域选择性受糖结构和糖环位置的功能化影响。通常,CRL 能够催化 C6 位置乙酰化单糖的区域选择性脱乙酰。当使用乙酰化二糖作为底物时,AXE 表现出对糖苷键中涉及 C2 位置时的 C2 或 C6 位置的明显偏好。通过根据活性和区域选择性为每种底物选择最佳的酶,我们制备了一小部分不同单羟基化构建块的文库,这些构建块可用作合成针对抗原呈递细胞甘露糖受体的甘露糖化糖缀合物疫苗的中间体。