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5a-Carba-glycopyranoside primers: potential building blocks for biocombinatorial synthesis of glycosphingolipid analogues

机译:5a-碳水化合物-糖吡喃糖苷底漆:糖鞘脂类似物生物组合合成的潜在组成部分

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Three ether-linked alkyl 5a-carba-glycopyranosides 1b,d, and 5b, and 5a'-carba-lactoside 7b were examined as potent primers in mouse 1316 melanoma cells for their feasibility as building blocks for oligosaccharide biosynthesis. Uptake by B16 cells was first observed for all carba-glycoside primers, and, especially, the 5a-carba-sugar analogues of N-acetyl-beta-D-glucosaminide 1b and beta-D-glucoside 1d were shown to produce two-to-four-fold larger amounts of glycosylated products than the corresponding true sugar primers 1a and 1c. The carba glycoside uptake by cells resulted in beta-galactosylation and subsequent sialylation of the incorporated galactose residues, giving rise to glycosylated products 3b and 3d having similar glycan structures as the ganglioside GM3. According to efficient uptake in cells, in addition to stability of the ether-linked pseudo-reducing ends of the oligosaccharides that formed, the carba glycoside primers have been demonstrated to be versatile building blocks for these biocombinatorial syntheses of glycolipid oligosaccharide mimetics. On the other hand, uptake for 5a-carba-galactopyranoside residue was found to be decreased by one-third for dodecyl 5a-carba-beta-D-galactopyranoside 5b. Observation of similar levels for 5a'-carba-beta-lactoside 7b under both cellular and cell-free conditions suggested that enzymes are likely to recognize the pyranose oxygen atom.
机译:在小鼠1316黑色素瘤细胞中,将三个醚连接的烷基5a-氨基甲酸酯-糖吡喃糖苷1b,d和5b,以及5a'-氨基甲酸酯-糖苷7b作为有效的引物进行了研究,证明它们可作为寡糖生物合成的基础。首先观察到所有碳糖苷引物都被B16细胞摄取,尤其是N-乙酰基-β-D-氨基葡萄糖苷1b和β-D-葡糖苷1d的5a-糖类似物显示产生两-糖基化产物的量是相应的真糖引物1a和1c的四倍。细胞摄取的氨基糖苷导致β-半乳糖基化和随后的掺入的半乳糖残基的唾液酸化,产生具有与神经节苷脂GM3相似的聚糖结构的糖基化产物3b和3d。根据细胞中的有效摄取,除了所形成的寡糖的醚连接的假还原末端的稳定性之外,已证明碳糖苷引物是糖脂寡糖模拟物的这些生物组合合成的通用构建基块。另一方面,发现十二烷基5a-卡巴-β-D-吡喃半乳糖苷5b的5a-卡巴-吡喃半乳糖苷残基的摄取减少了三分之一。在细胞和无细胞条件下观察到5a'-氨基-β-乳糖苷7b的水平相似,表明酶很可能识别吡喃糖氧原子。

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