Horrigan F T, Bookman R J
Department of Molecular and Cellular Pharmacology, University of Miami School of Medicine, Florida 33101.
Neuron. 1994 Nov;13(5):1119-29. doi: 10.1016/0896-6273(94)90050-7.
Using high resolution capacitance (Cm) measurement techniques, we mapped the kinetics of exocytosis evoked by brief (5-100 ms) depolarizations that activate voltage-dependent Ca2+ channels in rat adrenal chromaffin cells. After correcting the Cm signal for contributions from Na+ channel-gating charge movements, the initial kinetics of exocytosis were consistent with depolarization-triggered release occurring initially from an immediately releasable pool of only approximately 17 secretory vesicles. In contrast, repetitive application of longer depolarizations evoked release from a distinct, larger readily releasable pool of approximately 170 vesicles. Our results suggest that the secretory response of a chromaffin cell to an action potential is limited by the size of the immediately releasable pool rather than by a fusion mechanism that is slower than that at synapses.
利用高分辨率电容(Cm)测量技术,我们绘制了大鼠肾上腺嗜铬细胞中短暂(5 - 100毫秒)去极化引发的胞吐作用动力学图谱,这种去极化激活了电压依赖性Ca2+通道。在对Na+通道门控电荷运动的贡献进行校正后,胞吐作用的初始动力学与最初仅从大约17个分泌囊泡的立即释放池中发生的去极化触发释放相一致。相比之下,重复施加更长时间的去极化会引发从一个不同的、更大的约170个囊泡的易释放池中释放。我们的结果表明,嗜铬细胞对动作电位的分泌反应受到立即释放池大小的限制,而不是受到比突触处更慢的融合机制的限制。