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一条独特的内嗅皮层到海马 CA1 的直接通路用于嗅觉联想学习。

A distinct entorhinal cortex to hippocampal CA1 direct circuit for olfactory associative learning.

机构信息

Institute of Neuroscience, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, China.

State Key Laboratory of Cognitive Neuroscience &Learning and IDG/McGovern Institute for Brain Research, Beijing Normal University, Beijing, China.

出版信息

Nat Neurosci. 2017 Apr;20(4):559-570. doi: 10.1038/nn.4517. Epub 2017 Mar 6.

Abstract

Lateral and medial parts of entorhinal cortex (EC) convey nonspatial 'what' and spatial 'where' information, respectively, into hippocampal CA1, via both the indirect EC layer 2→ hippocampal dentate gyrus→CA3→CA1 and the direct EC layer 3→CA1 paths. However, it remains elusive how the direct path transfers distinct information and contributes to hippocampal learning functions. Here we report that lateral EC projection neurons selectively form direct excitatory synapses onto a subpopulation of morphologically complex, calbindin-expressing pyramidal cells (PCs) in the dorsal CA1 (dCA1), while medial EC neurons uniformly innervate all dCA1 PCs. Optogenetically inactivating the distinct lateral EC-dCA1 connections or the postsynaptic dCA1 calbindin-expressing PC activity slows olfactory associative learning. Moreover, optetrode recordings reveal that dCA1 calbindin-expressing PCs develop more selective spiking responses to odor cues during learning. Thus, our results identify a direct lateral EC→dCA1 circuit that is required for olfactory associative learning.

摘要

内嗅皮层(EC)的外侧和内侧部分分别通过间接的 EC 层 2→海马齿状回→CA3→CA1 和直接的 EC 层 3→CA1 路径,将非空间的“什么”和空间的“哪里”信息传递到海马 CA1。然而,直接路径如何传递不同的信息并有助于海马学习功能仍然难以捉摸。在这里,我们报告说,外侧 EC 投射神经元选择性地在背侧 CA1(dCA1)中的形态复杂、钙结合蛋白表达的锥体神经元(PC)的亚群上形成直接兴奋性突触,而内侧 EC 神经元均匀地支配所有 dCA1 PC。光遗传失活不同的外侧 EC-dCA1 连接或突触后 dCA1 钙结合蛋白表达 PC 活性会减缓嗅觉联想学习。此外,光电极记录显示,在学习过程中,dCA1 钙结合蛋白表达的 PC 对气味线索产生更具选择性的放电反应。因此,我们的结果确定了一个直接的外侧 EC→dCA1 回路,该回路对于嗅觉联想学习是必需的。

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