首页> 外文期刊>Journal of cell biology >Specific asparagine-linked oligosaccharides are not required for certain neuron-neuron and neuron-Schwann cell interactions.
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Specific asparagine-linked oligosaccharides are not required for certain neuron-neuron and neuron-Schwann cell interactions.

机译:某些神经元-神经元和神经元-Schwann细胞相互作用不需要特定的天冬酰胺连接的寡糖。

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To determine whether specific asparagine-linked (N-linked) oligosaccharides present in cell surface glycoproteins are required for cell-cell interactions within the peripheral nervous system, we have used castanospermine to inhibit maturation of N-linked sugars in cell cultures of neurons or neurons plus Schwann cells. Maximally 10-15% of the N-linked oligosaccharides on neuronal proteins have normal structure when cells are cultured in the presence of 250 micrograms/ml castanospermine; the remaining oligosaccharides are present as immature carbohydrate chains not normally found in these glycoproteins. Although cultures were treated for 2 wk with castanospermine, cells always remained viable and appeared healthy. We have analyzed several biological responses of embryonic dorsal root ganglion neurons, with or without added purified populations of Schwann cells, in the presence of castanospermine. We have observed that a normal complement of mature, N-linked sugars are not required for neurite outgrowth, neuron-Schwann cell adhesion, neuron-induced Schwann cell proliferation, or ensheathment of neurites by Schwann cells. Treatment of neuronal cultures with castanospermine increases the propensity of neurites to fasciculate. Extracellular matrix deposition by Schwann cells and myelination of neurons by Schwann cells are greatly diminished in the presence of castanospermine as assayed by electron microscopy and immunocytochemistry, suggesting that specific N-linked oligosaccharides are required for the expression of these cellular functions.
机译:为了确定是否存在于周围神经系统内的细胞间相互作用所需的细胞表面糖蛋白中存在特定的天冬酰胺连接(N链接)寡糖,我们使用了粟精胺来抑制神经元或神经元细胞培养物中N链接糖的成熟。再加上雪旺氏细胞。当细胞在250微克/毫升粟精胺的存在下培养时,神经元蛋白质上最多10-15%的N-连接寡糖具有正常结构;剩余的寡糖以未成熟的碳水化合物链形式存在,通常在这些糖蛋白中找不到。尽管用粟精胺处理培养物2周,但细胞始终保持活力并显得健康。我们已经分析了粟精胺存在下胚胎背根神经节神经元的几种生物学反应,有或没有添加纯化的雪旺细胞群体。我们已经观察到,神经突生长,神经元-施万细胞粘附,神经元诱导的雪旺氏细胞增殖或雪旺氏细胞包裹神经突不需要成熟的N-连接糖的正常补体。用粟精胺处理神经元培养物增加了神经突发束的倾向。如通过电子显微镜和免疫细胞化学测定的那样,在存在粟精胺的情况下,雪旺细胞的细胞外基质沉积和雪旺细胞的神经元髓鞘大大减少,这表明这些细胞功能的表达需要特定的N-连接寡糖。

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