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首页> 外文期刊>Glycobiology. >Conversion of cellular sialic acid expression from N-acetyl- to N-glycolylneuraminic acid using a synthetic precursor, N-glycolylmannosamine pentaacetate: inhibition of myelin-associated glycoprotein binding to neural cells.
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Conversion of cellular sialic acid expression from N-acetyl- to N-glycolylneuraminic acid using a synthetic precursor, N-glycolylmannosamine pentaacetate: inhibition of myelin-associated glycoprotein binding to neural cells.

机译:使用合成的前体N-糖基甘露糖胺五乙酸盐将细胞唾液酸表达从N-乙酰基转化为N-糖基神经氨酸:抑制髓磷脂相关糖蛋白与神经细胞的结合。

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摘要

Sialic acids are prominent termini of mammalian glycoconjugates and are key binding determinants for cell-cell recog-nition lectins. Binding of the sialic acid-dependent lectin, myelin-associated glycoprotein (MAG), to nerve cells is implicated in the inhibition of nerve regeneration after injury. Therefore, blocking MAG binding to nerve cell sialoglycoconjugates might enhance nerve regeneration. Previously, we reported that certain sialoglycoconjugates bearing N-acetylneuraminic acid (NeuAc) but not N-glycolylneuraminic acid (NeuGc) support MAG binding (Collins et al., 1997a). We now report highly efficient conversion of sialic acids on living neural cells from exclusively NeuAc to predominantly NeuGc using a novel synthetic metabolic precursor, N-glycolylmannosamine pentaacetate (Man-NGc-PA). When NG108-15 neuroblastoma-glioma hybrid cells, which normally express only NeuAc (and bind to MAG), were cultured in the presence of 1 mM ManNGcPA, they expressed 80-90% of their sialic acid precursor pool as NeuGc within 24 h. Within 5 days, 80% of their ganglioside-associated sialic acids and 70% of their glycoprotein-associated sialic acids were converted to NeuGc. Consistent with this result, treatment of NG108-15 cells with ManNGcPA resulted in nearly complete abrogation of MAG binding. These results demonstrate that ManNGcPA treatment efficiently alters the sialic acid structures on living cells, with a commensurate change in recognition by a physiologically important lectin.
机译:唾液酸是哺乳动物糖缀合物的重要末端,并且是细胞-细胞识别凝集素的关键结合决定簇。唾液酸依赖性凝集素,髓鞘相关糖蛋白(MAG)与神经细胞的结合牵涉到损伤后神经再生的抑制。因此,阻断MAG与神经细胞唾液糖共轭物的结合可能会增强神经再生。以前,我们报道了某些带有N-乙酰神经氨酸(NeuAc)的唾液酸共轭物支持MAG结合(Collins等,1997a)。现在,我们报告了使用新型合成代谢前体N-糖基甘露糖胺五乙酸盐(Man-NGc-PA)将生活神经细胞上的唾液酸高效地从专有NeuAc转化为主要NeuGc的过程。当在1 mM ManNGcPA存在下培养通常仅表达NeuAc(并结合MAG)的NG108-15神经母细胞瘤-神经胶质瘤杂交细胞时,它们在24 h内将其唾液酸前体库中的80-90%表达为NeuGc。在5天之内,它们与神经节苷脂相关的唾液酸的80%和与糖蛋白相关的唾液酸的70%被转化为NeuGc。与该结果一致,用ManNGcPA处理NG108-15细胞导致几乎完全取消了MAG结合。这些结果表明,ManNGcPA处理有效地改变了活细胞上的唾液酸结构,并且在生理上重要的凝集素的识别上也发生了相应的变化。

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