Glycosylation is required for maintenance of functional voltage-activated channels in growing neocortical neurons of the rat.

C Zona, F Eusebi, R Miledi
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引用次数: 26

Abstract

Voltage-activated currents were studied in whole-cell patch-clamped rat neocortical neurons growing in culture and treated with tunicamycin (TU), an inhibitor of protein N-glycosylation. The size of the Na+ current decreased progressively in the presence of TU (1-2 microM). This decrease was faster in growing 5-14 day-old neurons (to ca. 40% of control after 24 hours of treatment) than in fully grown 20-40-day-old neurons (to ca. 40% of control after 68 hours of treatment). The fast transient K+ current (A-current) was abolished, and the delayed rectifier K+ current was markedly reduced by a 24 hour treatment with TU (1-2 microM) in growing neurons. In contrast, in fully grown neurons these currents were unaffected by the same TU treatment. The size of the Ca2+ current was significantly reduced following a 24 hour treatment with TU (1-2 microM) in neurons at early stages of differentiation, but remained stable in 20-40-day-old neurons. It is concluded that protein glycosylation, presumably of the channel proteins themselves, is important for the functional expression of voltage-activated channels in embryonic cortical neurons during the early stages of cell growth in culture; the channels become less dependent on glycosylation in mature neurons.

糖基化是维持大鼠生长的新皮质神经元中电压激活通道功能所必需的。
电压激活电流在培养的全细胞膜片夹夹大鼠新皮质神经元中进行了研究,并用蛋白n -糖基化抑制剂tunicamycin (TU)处理。在TU(1 ~ 2微米)存在下,Na+电流的大小逐渐减小。在生长5-14天的神经元中(24小时处理后约为对照组的40%),这种下降速度比完全生长的20-40天的神经元(68小时处理后约为对照组的40%)更快。在生长神经元中,1-2微米TU处理24小时后,快速瞬态K+电流(a电流)被消除,延迟整流K+电流明显降低。相反,在完全发育的神经元中,这些电流不受相同的TU处理的影响。在分化早期的神经元中,用TU(1-2微米)处理24小时后,Ca2+电流的大小显著降低,但在20-40天龄的神经元中保持稳定。由此可见,在胚胎皮质神经元细胞生长的早期阶段,蛋白糖基化(可能是通道蛋白本身的糖基化)对于电压激活通道的功能表达是重要的;在成熟的神经元中,通道对糖基化的依赖性降低。
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来源期刊
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character 生命科学, 发育生物学与生殖生物学, 发育生物学
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