Sachidhanandam Shankar, Blanchet Christophe, Jeantet Yannick, Cho Yoon H, Mulle Christophe
Centre National de Recherche Scientifique (CNRS) Unité Mixte de Recherche 5091, Bordeaux Neuroscience Institute, University of Bordeaux, 33077 Bordeaux Cedex, France.
J Neurosci. 2009 Apr 15;29(15):5000-8. doi: 10.1523/JNEUROSCI.5807-08.2009.
Hippocampal mossy fiber (Mf) synapses are viewed as conditional detonators, assisting CA3 cells in complex network functions. By analyzing mice deficient for GluK2 (GluR6), GluK3 (GluR7) and GluK5 (KA2) genes we show that kainate receptors (KARs) play a crucial role in the control of synaptic integration and spike transmission efficacy at Mf synapses. We dissected out the role of the different KAR functions at Mf synapses and we show that presynaptic and postsynaptic KARs concur to amplify unitary Mf synaptic inputs to trigger spike discharge within a wide range of frequencies (from 1 to 50 Hz). Moreover, KARs strongly favor spike transmission in response to patterns of presynaptic activity mimicking in vivo dentate granule cell activity. By amplifying spike transmission, KARs also facilitate the induction of associative long-term potentiation in CA3. Hence the actions of KARs as amplifiers of spike transmission contribute largely to the "conditional detonator" function of Mf synapses and are likely important for spatial information processing.
海马苔藓纤维(Mf)突触被视为条件引爆器,协助CA3细胞发挥复杂的网络功能。通过分析缺乏GluK2(GluR6)、GluK3(GluR7)和GluK5(KA2)基因的小鼠,我们发现海人藻酸受体(KARs)在控制Mf突触的突触整合和动作电位传递效能中起关键作用。我们剖析了不同KAR功能在Mf突触中的作用,结果表明,突触前和突触后的KARs共同作用,在很宽的频率范围(从1到50赫兹)内放大单一Mf突触输入,以触发动作电位发放。此外,KARs强烈促进对模拟体内齿状颗粒细胞活动的突触前活动模式的动作电位传递。通过放大动作电位传递,KARs还促进了CA3中联合性长时程增强的诱导。因此,KARs作为动作电位传递放大器的作用在很大程度上促成了Mf突触的“条件引爆器”功能,并且可能对空间信息处理很重要。