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胚胎神经元与肌肉细胞接触时乙酰胆碱的释放。

Release of acetylcholine from embryonic neurons upon contact with muscle cell.

作者信息

Chow I, Poo M M

出版信息

J Neurosci. 1985 Apr;5(4):1076-82. doi: 10.1523/JNEUROSCI.05-04-01076.1985.

Abstract

When a spherical muscle cell (myoball) was manipulated into contact with either the soma or the neurite of an isolated neuron in 2-day-old Xenopus nerve-muscle cultures, depolarizations similar to miniature endplate potentials (MEPPs) were frequently detected in the muscle cell. These depolarizations occurred within minutes after myoball-soma contact and within seconds after myoball-neurite contact. They had time course and amplitude distribution similar to those of the MEPPs recorded from naturally occurring neuromuscular synapses between neurites and muscle cells found in the same cultures, but they occurred at a lower frequency and had smaller average amplitudes. These depolarizations were induced by acetylcholine (ACh) since they were reversibly blocked by addition of d-tubocurarine into the culture, and they were abolished in muscle cells pretreated with alpha-bungarotoxin before contact with the neuron. Greater than 60% of the neuronal population in these cultures released ACh upon this direct muscle contact. The appearance of MEPP-like potentials in the myoball upon contact with an isolated neuron suggests that the cellular machinery responsible for ACh release is present throughout the neuron and that packages of ACh molecules are available for release prior to nerve-muscle synapse formation. We also found that neurons which had previously made synapse with other muscle cells in the culture all failed to release ACh from the soma and showed reduced release capability at the neurite for the first 30 min to 1 hr of contact with a myoball. This finding suggests that, during synapatogenesis, there is a depletion of ACh molecules and/or substances responsible for the triggering of their release in the extrasynaptic regions of the neuron.

摘要

在2日龄非洲爪蟾神经肌肉培养物中,当将球形肌细胞(肌球)与分离的神经元的胞体或神经突接触时,经常在肌细胞中检测到类似于微小终板电位(MEPPs)的去极化。这些去极化在肌球 - 胞体接触后几分钟内以及肌球 - 神经突接触后几秒钟内发生。它们的时间进程和幅度分布与在相同培养物中发现的神经突与肌细胞之间自然发生的神经肌肉突触记录的MEPPs相似,但发生频率较低且平均幅度较小。这些去极化是由乙酰胆碱(ACh)诱导的,因为在培养物中加入d - 筒箭毒碱可使其可逆性阻断,并且在与神经元接触前用α - 银环蛇毒素预处理的肌细胞中这些去极化消失。在这些培养物中,超过60%的神经元群体在这种直接的肌肉接触时释放ACh。肌球与分离的神经元接触时出现MEPP样电位表明,负责ACh释放的细胞机制存在于整个神经元中,并且在神经肌肉突触形成之前,ACh分子包就可用于释放。我们还发现,先前在培养物中与其他肌细胞形成突触的神经元,在与肌球接触的最初30分钟至1小时内,均不能从胞体释放ACh,并且在神经突处的释放能力降低。这一发现表明,在突触发生过程中,神经元的突触外区域存在ACh分子和/或负责触发其释放的物质的消耗。

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