Poulain B, Baux G, Tauc L
J Physiol (Paris). 1986;81(4):270-7.
Transmitter release was studied with respect to the presynaptic acetylcholine (ACh) content at a central identified inhibitory synapse (Cl- conductance) of Aplysia californica. Statistical analysis of the synaptic noise evoked by sustained depolarization of the presynaptic neuron allowed us to calculate the quantal parameters of the postsynaptic responses. Loading of the presynaptic neurone with injected ACh led to an increase in the postsynaptic responses whereas the calculated miniature postsynaptic current (MPSC) was unmodified. Destruction of choline by choline oxidase either applied extracellularly and coupled to intense stimulations of the presynaptic cell or injected into the presynaptic neuron induced a depression of the postsynaptic response although the amplitude of the calculated MPSC remained constant. As the size of the MPSC, i.e. the size of the quantum, did not change in these experiments, it was concluded that the presynaptic ACh content controls the number of quanta released by a given presynaptic depolarization. As additional evidence, effects of abrupt increase in tonicity of the external medium were studied. The observed transient enhancement of the quantal content of the postsynaptic response could be attributed to an increase in the presynaptic concentration of ACh, resulting from the reduction in cellular volume.
我们在加州海兔的一个中枢确定的抑制性突触(氯离子电导)处,研究了递质释放与突触前乙酰胆碱(ACh)含量的关系。通过对突触前神经元持续去极化诱发的突触噪声进行统计分析,我们能够计算出突触后反应的量子参数。向突触前神经元注入ACh会导致突触后反应增强,而计算得出的微小突触后电流(MPSC)则未改变。通过细胞外应用胆碱氧化酶并结合对突触前细胞的强烈刺激,或者将胆碱氧化酶注入突触前神经元来破坏胆碱,尽管计算得出的MPSC幅度保持不变,但会导致突触后反应减弱。由于在这些实验中MPSC的大小,即量子的大小没有变化,因此得出结论:突触前ACh含量控制着给定突触前去极化释放的量子数量。作为额外的证据,我们研究了外部介质张力突然增加的影响。观察到的突触后反应量子含量的短暂增强可归因于细胞体积减小导致的突触前ACh浓度增加。