Frenguelli B G, Malinow R
Cold Spring Harbor Laboratory, New York 11724, USA.
Learn Mem. 1996 Sep-Oct;3(2-3):150-9. doi: 10.1101/lm.3.2-3.150.
The release of neurotransmitter from a nerve terminal on invasion by an action potential shows large trial-to-trial fluctuations. The factors contributing to this variability have not been elucidated clearly. Here, simultaneous patch-clamp and optical measurements from layer V neocortical pyramidal neurons have been used to assess the extent to which the fluctuations in transmitter release may be caused by variability in calcium rise in presynaptic structures. Boutons on axon collaterals were visualized and increases in intracellular calcium, assessed by Fura-2, were observed in response to single action potentials. In some boutons, calcium responses showed trial-to-trial variability and occasional apparent failures despite the faithful conduction of the action potential. These results suggest that a factor contributing to the fluctuation in transmitter release may be the variability with which depolarization of a presynaptic bouton produces an increase in intrabouton calcium.
动作电位侵袭时神经末梢释放神经递质的过程在不同实验试次间表现出很大的波动。导致这种变异性的因素尚未完全阐明。在此,通过对V层新皮质锥体神经元同时进行膜片钳和光学测量,来评估递质释放波动在多大程度上可能是由突触前结构中钙升高的变异性所引起的。轴突侧支上的突触小体可被可视化观察,并且通过Fura-2评估发现,对单个动作电位的反应中细胞内钙会增加。在一些突触小体中,尽管动作电位传导可靠,但钙反应在不同实验试次间表现出变异性,且偶尔会出现明显的钙反应缺失。这些结果表明,导致递质释放波动的一个因素可能是突触前突触小体去极化产生小体内钙增加的变异性。