Finnegan J M, Pihel K, Cahill P S, Huang L, Zerby S E, Ewing A G, Kennedy R T, Wightman R M
Department of Chemistry, University of North Carolina, Chapel Hill 27599-3290, USA.
J Neurochem. 1996 May;66(5):1914-23. doi: 10.1046/j.1471-4159.1996.66051914.x.
Amperometric detection of exocytosis at single chromaffin cells has shown that the distribution of spike areas, or quantal size, is dependent on the volume and catecholamine concentration of individual secretory vesicles. The present work offers an alternate, simplified model to analyze the current spikes due to single exocytotic events. When the cube root of these spike areas is plotted as a histogram, a Gaussian distribution is obtained for chromaffin cells and also mast, pheochromocytoma, and pancreatic beta-cells. It was found that the relative SD of these distributions is similar to that for the vesicular radii, which also have a Gaussian distribution in all four cell types. In addition, this model was used to evaluate conditions where the quantal size of individual events was altered. When chromaffin cells were maintained in culture for < 6 days, spikes of approximately double the quantal size were obtained on repeated exposure to 60 mM K+. The results suggest a heterogeneous distribution of catecholamine-containing vesicles at later days in culture is responsible for this alteration.
对单个嗜铬细胞胞吐作用的安培检测表明,尖峰面积分布或量子大小取决于单个分泌囊泡的体积和儿茶酚胺浓度。目前的工作提供了一个替代的、简化的模型来分析单个胞吐事件引起的电流尖峰。当将这些尖峰面积的立方根绘制成直方图时,嗜铬细胞以及肥大细胞、嗜铬细胞瘤和胰腺β细胞均呈现高斯分布。研究发现,这些分布的相对标准差与囊泡半径的相对标准差相似,而囊泡半径在所有四种细胞类型中也呈高斯分布。此外,该模型用于评估单个事件量子大小发生改变的情况。当嗜铬细胞在培养中维持<6天时,在反复暴露于60 mM K+时可获得约为量子大小两倍的尖峰。结果表明,培养后期含儿茶酚胺囊泡的异质性分布是造成这种改变的原因。