Rusakov D A, Fine A
Division of Neurophysiology, National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, United Kingdom.
Neuron. 2003 Jan 23;37(2):287-97. doi: 10.1016/s0896-6273(03)00025-4.
Synaptic activation is associated with rapid changes in intracellular Ca(2+), while the extracellular Ca(2+) level is generally assumed to be constant. Here, using a novel optical method to measure changes in extracellular Ca(2+) at high spatial and temporal resolution, we find that brief trains of synaptic transmission in hippocampal area CA1 induce transient depletion of extracellular Ca(2+). We show that this depletion, which depends on postsynaptic NMDA receptor activation, decreases the Ca(2+) available to enter individual presynaptic boutons of CA3 pyramidal cells. This in turn reduces the probability of consecutive synaptic releases at CA3-CA1 synapses and therefore contributes to short-term paired-pulse depression of minimal responses. This activity-dependent depletion of extracellular Ca(2+) represents a novel form of fast retrograde synaptic signaling that can modulate glutamatergic information transfer in the brain.
突触激活与细胞内钙离子(Ca(2+))的快速变化相关,而细胞外钙离子水平通常被认为是恒定的。在此,我们使用一种新颖的光学方法,以高空间和时间分辨率测量细胞外钙离子的变化,发现海马体CA1区的短暂突触传递序列会诱导细胞外钙离子的瞬时耗竭。我们表明,这种耗竭依赖于突触后NMDA受体的激活,减少了可进入CA3锥体神经元单个突触前终扣的钙离子。这进而降低了CA3-CA1突触连续突触释放的概率,因此导致最小反应的短期双脉冲抑制。这种依赖于活动的细胞外钙离子耗竭代表了一种新型的快速逆行突触信号传导形式,可调节大脑中的谷氨酸能信息传递。