Rosenboom H, Lindau M
Institut für Neurobiologie, Fachbereich Biologie, Freie Universität Berlin, Germany.
Proc Natl Acad Sci U S A. 1994 Jun 7;91(12):5267-71. doi: 10.1073/pnas.91.12.5267.
An increase in free Ca2+ triggers exocytosis in pituitary nerve terminals leading to an increase in membrane area and membrane capacitance. When Ca2+ is increased by step depolarization, an instantaneous capacitance increase during the first 80 ms is followed by a slow increase extending over several seconds. We measured capacitance changes associated with exocytosis and endocytosis in single pituitary nerve terminals internally perfused with high Ca2+. At 50 microM Ca2+ the capacitance increased by up to 2%/s, similar to the slow phase observed during depolarization. Our results indicate that at the site of fusion very high Ca2+ is required. Following exocytosis, large downward capacitance steps were measured, reflecting endocytosis of large vacuoles. These events were not abrupt but reflected a gradual decrease of fission pore conductance from 8 nS to < 40 pS during 500 ms, revealing the dynamics of individual fission pore closures. Above 300 pS, narrowing of the endocytotic fission pore was approximately 10 times slower than the previously reported expansion of the exocytotic fusion pore. The transition between 300 pS and 0 pS took approximately 200 ms, whereas it has been reported that the exocytotic fusion pore measured in mast cells opens from 0 to 280 pS in < 100 microseconds. The time course of closing of the fission pore may be explained by an exponential decrease in pore diameter occurring at a constant rate.
游离钙离子浓度升高会触发垂体神经末梢的胞吐作用,导致膜面积和膜电容增加。当通过逐步去极化使钙离子浓度升高时,在最初的80毫秒内会出现瞬时电容增加,随后是持续数秒的缓慢增加。我们测量了在内部灌注高浓度钙离子的单个垂体神经末梢中与胞吐作用和内吞作用相关的电容变化。在50微摩尔/升的钙离子浓度下,电容以高达2%/秒的速度增加,这与去极化过程中观察到的缓慢阶段相似。我们的结果表明,在融合位点需要非常高的钙离子浓度。胞吐作用之后,测量到了大幅度的向下电容阶跃,这反映了大液泡的内吞作用。这些事件并非突然发生,而是反映了在500毫秒内裂变孔电导从8纳西门子逐渐降低至小于40皮西门子,揭示了单个裂变孔关闭的动态过程。在300皮西门子以上,内吞裂变孔的变窄速度比先前报道的胞吐融合孔扩张速度慢约10倍。在300皮西门子和0皮西门子之间的转变大约需要200毫秒,而据报道,在肥大细胞中测量到的胞吐融合孔在不到100微秒的时间内从0皮西门子开放至280皮西门子。裂变孔关闭的时间进程可能由孔径以恒定速率呈指数下降来解释。