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Role of oligomannosidic N-glycans in the proliferation, adhesion and signalling of C6 glioblastoma cells

机译:寡甘露糖苷N聚糖在C6胶质母细胞瘤细胞增殖,粘附和信号转导中的作用

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The potential role of glycoprotein N-glycans in the proliferation and adhesion of C6 glioblastoma cells was investigated using a set of N-glycosylation inhibitors (tunicamycin, deoxynojirimycin, castanospermine, deoxymannojirimycin, swainsonine), and traffic (monensin). It was observed that both the proliferative and adhesive properties of C6 cells were dependent upon the expression at the cell surface of glycoproteins with oligomannosidic and hybrid type N-glycans, whereas the absence of N-glycans (tunicamycin) or the presence of glucosyl-oligomannosides (deoxynojirimycin and castanospermine) and the absence of glycoproteins at the cell surface (monensin) reduced both the proliferative and adhesive properties of C6 cells. Studies of the classical elements of signalling pathways indicated that the different inhibitors have a low impact on tyrosine phosphorylations and oncogene product expression (except the ras oncogene product), except on phosphorylations on other residues. An endogenous soluble lectin (CSL; J. Neurochem. 49 (1987) 1250), specific for oligomannosidic and hybrid type N-glycans, was present and externalised by the cells through a pinching-off of large intracellular vesicles, a mechanism that was not blocked by monensine; in contrast with the externalisation of its glycoprotein ligands. The inhibitory effect of anti-CSL Fab fragments on adhesion indicates that the polyvalent CSL acts as a bridging molecule for a family of surface glycoproteins expressed at the surface of C6 cells. The inhibitory effect of the same Fab fragments on the proliferation indicates that CSL is a mitogen for these cells, possibly involved in clustering its surface glycoprotein ligands. A mechanism for the loss of contact inhibition is discussed based on the over-expression of CSL ligands in C6 glioblastoma cells relative to normal cells.
机译:使用一组N-糖基化抑制剂(衣霉素,脱氧野rim霉素,粟精胺,脱氧甘露金霉素,swainsonine)和交通(monensin)研究了糖蛋白N-聚糖在C6胶质母细胞瘤细胞增殖和粘附中的潜在作用。观察到,C6细胞的增殖和粘附特性均取决于具有寡甘露糖苷和杂合型N-聚糖的糖蛋白在细胞表面的表达,而缺少N-聚糖(衣霉素)或存在糖基-寡甘露糖苷(脱氧野oji霉素和粟精胺)以及细胞表面不存在糖蛋白(莫能菌素)会降低C6细胞的增殖和粘附特性。对信号传导途径经典元素的研究表明,不同的抑制剂对酪氨酸磷酸化和癌基因产物表达(ras癌基因产物除外)的影响很小,除了对其他残基的磷酸化作用之外。存在一种内源性可溶性凝集素(CSL; J。Neurochem。49(1987)1250),其对寡甘露糖苷和杂合型N-聚糖具有特异性,并通过夹住大的细胞内囊泡而被细胞外化,这种机制并非如此被莫能菌素阻断;与其糖蛋白配体的外在化相反。抗CSL Fab片段对黏附的抑制作用表明,多价CSL充当在C6细胞表面表达的一系列表面糖蛋白家族的桥接分子。相同Fab片段对增殖的抑制作用表明CSL是这些细胞的促分裂原,可能参与了其表面糖蛋白配体的聚集。基于相对于正常细胞,C6胶质母细胞瘤细胞中CSL配体的过表达,讨论了失去接触抑制的机制。

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