Bucurenciu Iancu, Kulik Akos, Schwaller Beat, Frotscher Michael, Jonas Peter
Physiological Institute I, University of Freiburg, Hermann-Herder-Strasse 7, D-79104 Freiburg, Germany.
Neuron. 2008 Feb 28;57(4):536-45. doi: 10.1016/j.neuron.2007.12.026.
It is generally thought that transmitter release at mammalian central synapses is triggered by Ca2+ microdomains, implying loose coupling between presynaptic Ca2+ channels and Ca2+ sensors of exocytosis. Here we show that Ca2+ channel subunit immunoreactivity is highly concentrated in the active zone of GABAergic presynaptic terminals of putative parvalbumin-containing basket cells in the hippocampus. Paired recording combined with presynaptic patch pipette perfusion revealed that GABA release at basket cell-granule cell synapses is sensitive to millimolar concentrations of the fast Ca2+ chelator BAPTA but insensitive to the slow Ca2+ chelator EGTA. These results show that Ca2+ source and Ca2+ sensor are tightly coupled at this synapse, with distances in the range of 10-20 nm. Models of Ca2+ inflow-exocytosis coupling further reveal that the tightness of coupling increases efficacy, speed, and temporal precision of transmitter release. Thus, tight coupling contributes to fast feedforward and feedback inhibition in the hippocampal network.
一般认为,哺乳动物中枢突触处的递质释放是由Ca2+微区触发的,这意味着突触前Ca2+通道与胞吐作用的Ca2+传感器之间存在松散耦合。在此,我们表明,Ca2+通道亚基免疫反应性高度集中于海马中假定含小白蛋白的篮状细胞的GABA能突触前终末的活性区。配对记录结合突触前膜片吸管灌注显示,篮状细胞-颗粒细胞突触处的GABA释放对毫摩尔浓度的快速Ca2+螯合剂BAPTA敏感,但对慢速Ca2+螯合剂EGTA不敏感。这些结果表明,在该突触处Ca2+来源与Ca2+传感器紧密耦合,距离在10 - 20纳米范围内。Ca2+内流-胞吐耦合模型进一步揭示,耦合的紧密程度提高了递质释放的效能、速度和时间精度。因此,紧密耦合有助于海马网络中的快速前馈和反馈抑制。