首页> 美国卫生研究院文献>The Journal of Neuroscience >Nerve growth factor increases the number of functional Na channels and induces TTX-resistant Na channels in PC12 pheochromocytoma cells
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Nerve growth factor increases the number of functional Na channels and induces TTX-resistant Na channels in PC12 pheochromocytoma cells

机译:神经生长因子增加PC12嗜铬细胞瘤细胞中功能性Na通道的数量并诱导TTX耐药性Na通道

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摘要

The PC12 clone is a line of rat pheochromocytoma cells that undergoes neuronal differentiation in the presence of NGF protein. In the absence of NGF, PC12 cells are electrically inexcitable, while after several weeks of NGF treatment they develope Na+ action potentials. Past estimates made by measuring binding of 3H-saxitoxin (STX) indicate that NGF treatment brings about a large increase in Na channel density that is of sufficient magnitude to account for the induction of excitability. We have now used 22Na uptake to measure the Na permeability of PC12 cells before and after long-term NGF treatment. Treatment with NGF does not change the resting Na+ permeability. The alkaloid toxins veratridine and batrachotoxin (BTX) and scorpion toxin were used to activate Na channels. Such studies demonstrate that these toxins induce TTX-sensitive Na uptake in both NGF-treated and untreated cells and reveal differences in functional Na channel numbers per cell and per unit of membrane area that are similar to those found in the STX binding studies. On the other hand, affinities for drugs that activate these channels are not affected by NGF treatment. We also find that NGF-treated PC12 cells contain a population of Na channels with low affinity for TTX. These channels account for 5–20% of total BTX or veratridine-stimulated flux. Thus, NGF has 2 effects regarding the Na channels of PC12 cells: it increases the number of functional Na channels that otherwise behave similarly to those present before NGF treatment, and it induces the presence of TTX-resistant Na channels. These findings indicate that the PC12 model system may serve to study the developmental regulation of Na channel expression and properties.
机译:PC12克隆是大鼠嗜铬细胞瘤细胞系,在存在NGF蛋白的情况下会经历神经元分化。在缺乏NGF的情况下,PC12细胞是电兴奋性的,而经过NGF处理几周后,它们会产生Na +动作电位。过去通过测量3H-萨克斯毒素(STX)的结合所做的估算表明,NGF处理可显着增加Na通道的密度,其强度足以解决诱发兴奋性的问题。现在,我们已经使用22Na摄取量来测量长期NGF治疗前后PC12细胞的Na通透性。 NGF处理不会改变静息的Na +渗透性。生物碱毒素藜芦定和杆菌毒素(BTX)和蝎毒素被用来激活Na通道。此类研究表明,这些毒素在经过NGF处理的细胞和未经处理的细胞中均诱导TTX敏感的Na摄取,并揭示了与STX结合研究相似的每个细胞和每单位膜面积的功能性Na通道数差异。另一方面,对激活这些通道的药物的亲和力不受NGF治疗的影响。我们还发现,NGF处理的PC12细胞包含对TTX亲和力低的Na通道。这些通道占BTX或藜芦烷刺激的总通量的5–20%。因此,NGF对PC12细胞的Na通道有2种作用:它增加了功能性Na通道的数量,这些功能在其他方面与NGF治疗之前相似,并且诱导TTX耐药性Na通道的存在。这些发现表明,PC12模型系统可用于研究Na通道表达和特性的发育调控。

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