Emptage N J, Reid C A, Fine A
Division of Neurophysiology, National Institute for Medical Research, NW7 1AA, London, United Kingdom.
Neuron. 2001 Jan;29(1):197-208. doi: 10.1016/s0896-6273(01)00190-8.
Evoked transmitter release depends upon calcium influx into synaptic boutons, but mechanisms regulating bouton calcium levels and spontaneous transmitter release are obscure. To understand these processes better, we monitored calcium transients in axons and presynaptic terminals of pyramidal neurons in hippocampal slice cultures. Action potentials reliably evoke calcium transients in axons and boutons. Calcium-induced calcium release (CICR) from internal stores contributes to the transients in boutons and to paired-pulse facilitation of EPSPs. Store depletion activates store-operated calcium channels, influencing the frequency of spontaneous transmitter release. Boutons display spontaneous Ca2+ transients; blocking CICR reduces the frequency of these transients and of spontaneous miniature synaptic events. Thus, spontaneous transmitter release is largely calcium mediated, driven by Ca2+ release from internal stores. Bouton store release is important for short-term synaptic plasticity and may also contribute to long-term plasticity.
诱发的递质释放取决于钙离子流入突触小体,但调节小体钙离子水平和自发递质释放的机制尚不清楚。为了更好地理解这些过程,我们监测了海马切片培养物中锥体神经元轴突和突触前终末的钙瞬变。动作电位可靠地诱发轴突和小体中的钙瞬变。来自内部储存库的钙诱导钙释放(CICR)有助于小体中的瞬变以及兴奋性突触后电位(EPSP)的双脉冲易化。储存库耗竭激活储存库操纵的钙通道,影响自发递质释放的频率。小体显示出自发的Ca2+瞬变;阻断CICR可降低这些瞬变的频率以及自发微小突触事件的频率。因此,自发递质释放很大程度上是由内部储存库释放的Ca2+介导的。小体储存库释放对短期突触可塑性很重要,也可能有助于长期可塑性。