Zengel J E, Sosa M A, Poage R E, Mosier D R
Research Service, Department of Veterans Affairs Medical Center, Gainesville, Florida.
J Gen Physiol. 1994 Aug;104(2):337-55. doi: 10.1085/jgp.104.2.337.
Under conditions of reduced quantal content, repetitive stimulation of a presynaptic nerve can result in a progressive increase in the amount of transmitter released by that nerve in response to stimulation. At the frog neuromuscular junction, this increase in release has been attributed to four different processes: first and second components of facilitation, augmentation, and potentiation (e.g., Zengel, J. E., and K. L. Magleby. 1982. Journal of General Physiology. 80:583-611). It has been suggested that an increased entry of Ca2+ or an accumulation of intraterminal Ca2+ may be responsible for one or more of these processes. To test this hypothesis, we have examined the role of intracellular Ca2+ in mediating changes in end-plate potential (EPP) amplitude during and after repetitive stimulation at the frog neuromuscular junction. We found that increasing the extracellular Ca2+ concentration or exposing the preparation to carbonyl cyanide m-chlorophenylhydrazone, ionomycin, or cyclopiazonic acid all led to a greater increase in EPP amplitude during conditioning trains of 10-200 impulses applied at a frequency of 20 impulses/s. These experimental manipulations, all of which have been shown to increase intracellular levels of Ca2+, appeared to act by increasing primarily the augmentation component of increased release. The results of this study are consistent with previous suggestions that the different components of increased release represent different mechanisms, and that Ca2+ may be acting at more than one site in the nerve terminal.
在量子含量降低的情况下,对突触前神经进行重复刺激可导致该神经在受到刺激时释放的递质数量逐渐增加。在青蛙神经肌肉接头处,这种释放量的增加归因于四个不同的过程:易化的第一和第二成分、增强和强直后增强(例如,曾格尔,J. E.,和 K. L. 马格莱比。1982 年。《普通生理学杂志》。80:583 - 611)。有人提出,Ca2+ 进入量的增加或终末内 Ca2+ 的积累可能是这些过程中的一个或多个的原因。为了验证这一假设,我们研究了细胞内 Ca2+ 在青蛙神经肌肉接头处重复刺激期间和之后介导终板电位(EPP)幅度变化中的作用。我们发现,增加细胞外 Ca2+ 浓度或使标本暴露于羰基氰 m - 氯苯腙、离子霉素或环匹阿尼酸,在以 20 次冲动/秒的频率施加 10 - 200 次冲动的条件刺激序列期间,均导致 EPP 幅度有更大的增加。所有这些实验操作均已证明可增加细胞内 Ca2+ 水平,它们似乎主要通过增加释放增加的增强成分来起作用。本研究结果与先前的观点一致,即释放增加的不同成分代表不同的机制,并且 Ca2+ 可能在神经末梢的多个位点起作用。