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突触终末的持续去极化促进了小龙虾神经肌肉接头处神经诱发的递质释放。

Maintained depolarization of synaptic terminals facilitates nerve-evoked transmitter release at a crayfish neuromuscular junction.

作者信息

Wojtowicz J M, Atwood H L

出版信息

J Neurobiol. 1983 Sep;14(5):385-90. doi: 10.1002/neu.480140506.

Abstract

Presynaptic and postsynaptic potentials were examined by intracellular recording at a crayfish neuromuscular junction. During normal synaptic transmission, the action potentials were recorded in the terminal region of the excitatory axon and postsynaptic responses were obtained in the muscle fibers. We found that it was possible to modify the synaptic transmission by applying depolarizing or hyperpolarizing currents through the presynaptic intracellular electrode. Typically, a 7-15 mV depolarization lasting longer than 50 msec leads to a large (500%) enhancement of transmitter release, even though the preterminal action potential is reduced in amplitude. Hyperpolarization increases the amplitude of the action potential, but slightly reduces the transmitter release. These results are different from those reported for other neuromuscular synapses and the squid giant synapse, but are similar in many respects to the results reported for several invertebrate central synapses. We conclude, first, that different synapses may have markedly different responses to conditioning by membrane polarization and, secondly, that maintained low-level depolarization may induce a potentiated state in the nerve terminal, perhaps brought about by slow entry of calcium.

摘要

通过在小龙虾神经肌肉接头处进行细胞内记录来检测突触前电位和突触后电位。在正常的突触传递过程中,在兴奋性轴突的终末区域记录动作电位,并在肌肉纤维中获得突触后反应。我们发现,通过突触前细胞内电极施加去极化或超极化电流,可以改变突触传递。通常,持续时间超过50毫秒的7 - 15毫伏去极化会导致递质释放大幅增强(500%),即使终末前动作电位的幅度减小。超极化会增加动作电位的幅度,但会略微减少递质释放。这些结果与其他神经肌肉突触和枪乌贼巨大突触所报道的结果不同,但在许多方面与几种无脊椎动物中枢突触所报道的结果相似。我们首先得出结论,不同的突触对膜极化调节可能有明显不同的反应,其次,持续的低水平去极化可能会在神经末梢诱导一种增强状态,这可能是由钙的缓慢内流引起的。

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