首页> 美国卫生研究院文献>The Journal of Neuroscience >Enhancement of the Dense-Core Vesicle Secretory Cycle by Glucocorticoid Differentiation of PC12 Cells: Characteristics of Rapid Exocytosis and Endocytosis
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Enhancement of the Dense-Core Vesicle Secretory Cycle by Glucocorticoid Differentiation of PC12 Cells: Characteristics of Rapid Exocytosis and Endocytosis

机译:糖皮质激素分化PC12细胞增强的密集核心囊泡分泌周期:快速胞吐和胞吞的特征

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摘要

The secretory cycle of dense-core vesicles (DCVs) in physiologically stimulated patch-clamped PC12 cells was analyzed using both amperometry and capacitance measurements. Untreated cells had low or undetectable Ca currents and sparse secretory responses to short depolarizations. Dexamethasone (5 μm) treatment for 5–7 d tripled Ca current magnitude and dramatically increased quantal secretion in response to depolarization with action potentials. Such cells expressed L-, N-, and P-type Ca channels, and depolarization evoked rapid catecholamine secretion recorded as amperometric spikes; the average latency was ∼50 msec. These spikes were much smaller and shorter than those of primary adrenal chromaffin cells, reflecting the smaller size of DCVs in PC12 cells. Depolarizing pulse trains also elicited a rapid increase in membrane capacitance corresponding to exocytosis in differentiated but not in naïve cells. On termination of stimulation, membrane capacitance declined within 20 sec to baseline indicative of rapid endocytosis (RE). RE did not take place when secretion was stimulated in the presence of Ba or Sr, indicating that RE is Ca-specific. RE was blocked when either anti-dynamin antibodies or the pleckstrin homology domain of dynamin-1 was loaded into the cell via the patch pipette. These studies indicate that neuroendocrine differentiation of PC12 cells with glucocorticoids enhances the development of the excitable membrane and increases the coupling between Ca channels and vesicle release sites, leading to rapid exocytosis and endocytosis. Slow catecholamine secretion in undifferentiated cells may be caused in part by a lack of localized secretory machinery rather than being an intrinsic property of dense-core vesicles.
机译:使用电流分析法和电容测量分析了生理刺激的膜片钳PC12细胞中的密集核心囊泡(DCV)的分泌周期。未经处理的细胞具有低或不可检测的Ca电流,并且对短去极化的稀疏分泌反应。地塞米松(5μm)处理5-7 d使Ca电流强度增加了两倍,并随着动作电位的去极化而显着增加了定量分泌。这类细胞表达L型,N型和P型Ca通道,去极化引起快速的儿茶酚胺分泌,记录为安培峰。平均等待时间约为50毫秒。这些峰值比原代肾上腺嗜铬细胞小得多,短得多,反映出PC12细胞中DCV的大小较小。去极化脉冲序列还引起膜电容的快速增加,这对应于已分化的而非幼稚细胞中的胞吐作用。刺激终止后,膜电容在20秒内下降至基线,表明快速内吞(RE)。当在Ba或Sr的存在下刺激分泌时,RE未发生,表明RE是Ca特异的。当通过贴片移液器将抗动力蛋白抗体或dynamin-1的pleckstrin同源结构域加载到细胞中时,RE被阻断。这些研究表明,用糖皮质激素使PC12细胞的神经内分泌分化增强了可兴奋膜的发育,并增加了钙通道与囊泡释放位点之间的偶联,从而导致快速的胞吐作用和内吞作用。未分化细胞中儿茶酚胺分泌缓慢的部分原因可能是缺乏局部分泌机制,而不是致密囊泡的固有特性。

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