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首页> 外文期刊>eLife journal >Dendritic spikes in hippocampal granule cells are necessary for long-term potentiation at the perforant path synapse
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Dendritic spikes in hippocampal granule cells are necessary for long-term potentiation at the perforant path synapse

机译:海马颗粒细胞中的树突状刺突是穿孔通路突触长期增强所必需的

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摘要

Long-term potentiation (LTP) of synaptic responses is essential for hippocampal memory function. Perforant-path (PP) synapses on hippocampal granule cells (GCs) contribute to the formation of associative memories, which are considered the cellular correlates of memory engrams. However, the mechanisms of LTP at these synapses are not well understood. Due to sparse firing activity and the voltage attenuation in their dendrites, it remains unclear how associative LTP at distal synapses occurs. Here, we show that NMDA receptor-dependent LTP can be induced at PP-GC synapses without backpropagating action potentials (bAPs) in acute rat brain slices. Dendritic recordings reveal substantial attenuation of bAPs as well as local dendritic Na+ spike generation during PP-GC input. Inhibition of dendritic Na+ spikes impairs LTP induction at PP-GC synapse. These data suggest that dendritic spikes may constitute a key cellular mechanism for memory formation in the dentate gyrus.
机译:突触反应的长期增强(LTP)对于海马记忆功能至关重要。海马颗粒细胞(GC)上的穿孔路径(PP)突触有助于联想记忆的形成,这被认为是记忆记忆细胞的细胞相关性。但是,对这些突触的LTP的机制还没有很好的了解。由于稀疏的射击活动和树突中的电压衰减,目前尚不清楚远端突触中的LTP如何发生。在这里,我们表明,可以在PP-GC突触处诱导NMDA受体依赖性LTP,而无需在急性大鼠脑切片中向后传播动作电位(bAPs)。树突状记录显示在PP-GC输入期间,bAP的显着衰减以及局部树突状Na +尖峰的产生。树突状Na +尖峰的抑制会削弱PP-GC突触处的LTP诱导。这些数据表明,树突状突峰可能构成了在齿状回中形成记忆的关键细胞机制。

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