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小龙虾神经肌肉接头处的突触前膜电位与神经递质释放

Presynaptic membrane potential and transmitter release at the crayfish neuromuscular junction.

作者信息

Wojtowicz J M, Atwood H L

出版信息

J Neurophysiol. 1984 Jul;52(1):99-113. doi: 10.1152/jn.1984.52.1.99.

Abstract

Release of transmitter was evoked at neuromuscular junctions of the crayfish opener muscle by passage of current through an intracellular electrode impaling a branch of the motor axon close to a muscle fiber. Membrane-potential changes in the presynaptic axon branch were monitored, together with postsynaptic potentials. Depolarization of impaled secondary axonal branches by more than 10 mV led to an increase in asynchronous transmitter release. The release was facilitated by prolonged (50-500 ms) depolarizations and it decayed rapidly when depolarization was terminated. Ca2+ was essential for facilitated release; however, no indication of a Ca spike was found at the recording site. Input-output curves for the synapse were obtained by applying depolarizing pulses of varying amplitude to the axon branch. Transmitter output was strongly influenced by both amplitude and duration of the applied depolarization. During normal synaptic transmission, propagated Na+-dependent action potentials were recorded in the secondary axonal branches but there was no evidence for a calcium-dependent component for these action potentials. Evoked release was dependent on Ca2+ and was steeply dependent on the amplitude of the action potential, which could be made variable in size by application of tetrodotoxin (TTX). Prolonged depolarization of axonal branches resulted in enhancement of transmitter release evoked by an action potential. The enhancement occurred in spite of a simultaneous reduction of the amplitude of the action potential. Morphological features of the terminals were investigated after injection of lucifer yellow into the axon. An electrical model incorporating the morphological features suggests that membrane-potential changes set up in the main axon reach the nearest terminals with 30-40% attenuation, while events originating in the terminals would be severely attenuated in the main axon. Comparison of the crayfish synapse with other frequently studied synapses shows both similarities and differences, suggesting that it is not possible to apply findings made in one synapse to all others.

摘要

通过将电流通入刺入靠近肌纤维的运动轴突分支的细胞内电极,可在小龙虾开肌的神经肌肉接头处诱发递质释放。监测突触前轴突分支的膜电位变化以及突触后电位。刺入的次级轴突分支去极化超过10 mV会导致异步递质释放增加。长时间(50 - 500毫秒)的去极化促进了递质释放,而去极化终止时递质释放迅速衰减。钙离子对于促进递质释放至关重要;然而,在记录部位未发现钙离子峰的迹象。通过向轴突分支施加不同幅度的去极化脉冲,获得了该突触的输入 - 输出曲线。递质输出受到所施加去极化的幅度和持续时间的强烈影响。在正常突触传递过程中,在次级轴突分支中记录到了依赖钠离子的传播性动作电位,但没有证据表明这些动作电位存在依赖钙离子的成分。诱发释放依赖于钙离子,并且强烈依赖于动作电位的幅度,通过应用河豚毒素(TTX)可以使动作电位的大小发生变化。轴突分支的长时间去极化导致动作电位诱发的递质释放增强。尽管动作电位的幅度同时降低,但仍出现了增强现象。将荧光黄注入轴突后,研究了终末的形态特征。一个包含这些形态特征的电模型表明,主轴突中产生的膜电位变化到达最近的终末时衰减30 - 40%,而起源于终末的事件在主轴突中会严重衰减。将小龙虾突触与其他经常研究的突触进行比较,发现既有相似之处也有不同之处,这表明不可能将在一个突触中获得的发现应用于所有其他突触。

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