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Developing a Library of Mannose-Based Mono- and Disaccharides: A General Chemoenzymatic Approach to Monohydroxylated Building Blocks

机译:开发基于甘露糖的单糖和二糖的文库:一般化学酶的单羟基化建筑块

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摘要

Regioselective deprotection of acetylated mannose-based mono- and disaccharides differently functionalized in anomeric position was achieved by enzymatic hydrolysis. Candida rugosa lipase (CRL) and Bacillus pumilus 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.
机译:在异头位置不同地官能化的乙酰化甘露单糖和二糖的区域选择性脱保护通过酶水解来实现。皱褶假丝酵母脂肪酶(CRL)和短小芽孢杆菌乙酰木聚糖酯酶(AXE)固定化在辛基 - 琼脂糖和乙醛酰 - 琼脂糖,分别。生物催化剂的区域选择性受糖结构和功能化的异头位置。一般情况下,CRL是能够催化C-6位乙酰化单糖的区域选择性脱保护。当乙酰化二糖被用作底物,AX表现为C2时,或者当C2参与了糖苷键C6位置明显的偏爱。通过选择最佳的酶的活性和区域选择性方面每个衬底,我们制备了可作为中间体,用于甘露糖基糖缀合物疫苗靶向抗原呈递细胞的甘露糖受体的合成不同单羟基化构建块的一个小的文库。

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