Parsons T D, Lenzi D, Almers W, Roberts W M
Max-Planck-Institut für medizinische Forschung Abteilung Molekulare Zellforschung, Heidelberg, Federal Republic of Germany.
Neuron. 1994 Oct;13(4):875-83. doi: 10.1016/0896-6273(94)90253-4.
Depolarization of isolated frog saccular hair cells caused Ca(2+)-dependent increases in membrane capacitance that we interpret as the fusion of synaptic vesicles with the plasma membrane. During a maintained depolarization to -10 mV, the capacitance increased at a rate corresponding to the fusion of approximately 500 vesicles per second at each active zone. Release continued at this high rate for up to 2 s, long enough to exhaust > 5 times the number of vesicles initially in close apposition to the plasma membrane at active zones. We therefore propose that hair cells are specialized for rapid replenishment of vesicles at release sites. Upon repolarization to -70 mV, the capacitance returned exponentially (time constant, approximately 14 s) to near the prestimulus level in perforated-patch recordings, but not in whole-cell recordings, suggesting that a mobile intracellular factor is required for membrane retrieval.
分离的青蛙球囊毛细胞去极化会导致膜电容以钙离子依赖的方式增加,我们将此解释为突触小泡与质膜融合的结果。在持续去极化至-10 mV的过程中,电容增加的速率相当于每个活性区每秒约500个小泡的融合。这种高释放率可持续2秒,足以耗尽活性区最初紧邻质膜的小泡数量的5倍以上。因此,我们认为毛细胞专门用于在释放位点快速补充小泡。在穿孔膜片钳记录中,复极化至-70 mV时,电容呈指数形式(时间常数约为14秒)恢复到接近刺激前水平,但在全细胞记录中则不然,这表明膜回收需要一种可移动的细胞内因子。