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培养的海兔感觉运动突触处,高频刺激诱发的递质易释放池的变化及释放效能的变化。

Changes in the readily releasable pool of transmitter and in efficacy of release induced by high-frequency firing at Aplysia sensorimotor synapses in culture.

作者信息

Zhao Yali, Klein Marc

机构信息

Department of Physiological Science, UCLA, Los Angeles, California 90095-1606, USA.

出版信息

J Neurophysiol. 2004 Apr;91(4):1500-9. doi: 10.1152/jn.01019.2003. Epub 2003 Nov 26.

Abstract

Synaptic transmission at the sensory neuron-motor neuron synapses of Aplysia, like transmission at many synapses of both vertebrates and invertebrates, is increased after a short burst of high-frequency stimulation (HFS), a phenomenon known as posttetanic potentiation (PTP). PTP is generally attributable to an increase in transmitter release from presynaptic neurons. We investigated whether changes in the readily releasable pool of transmitter (RRP) contribute to the potentiation that follows HFS. We compared the changes in excitatory postsynaptic potentials (EPSPs) evoked with action potentials to changes in the RRP as estimated from the asynchronous transmitter release elicited by a hypertonic solution. The changes in the EPSP were correlated with changes in the RRP, but the changes matched quantitatively only at connections whose initial synaptic strength was greater than the median for all experiments. At weaker connections, the increase in the RRP was insufficient to account for PTP. Weaker connections initially released a smaller fraction of the RRP with each EPSP than stronger ones, and this fraction increased at weaker connections after HFS. Moreover, the initial transmitter release in response to the hypertonic solution was accelerated after HFS, indicating that the increase in the efficacy of release was not restricted to excitation-secretion coupling. Modulation of the RRP and of the efficacy of release thus both contribute to the enhancement of transmitter release by HFS.

摘要

海兔感觉神经元与运动神经元突触处的突触传递,如同脊椎动物和无脊椎动物许多突触处的传递一样,在短串高频刺激(HFS)后会增强,这一现象被称为强直后增强(PTP)。PTP通常归因于突触前神经元递质释放的增加。我们研究了递质的易释放池(RRP)的变化是否有助于HFS后的增强作用。我们将动作电位诱发的兴奋性突触后电位(EPSP)的变化与通过高渗溶液引发的异步递质释放所估计的RRP的变化进行了比较。EPSP的变化与RRP的变化相关,但仅在初始突触强度大于所有实验中位数的连接中,两者变化在数量上相匹配。在较弱的连接中,RRP的增加不足以解释PTP。较弱的连接在每次EPSP时最初释放的RRP比例比强连接小,并且在HFS后较弱连接处的这一比例增加。此外,HFS后对高渗溶液的初始递质释放加速,表明释放效率的增加并不局限于兴奋 - 分泌偶联。因此,RRP的调节和释放效率的调节都有助于HFS增强递质释放。

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