Centre for Discovery Brain Sciences, University of Edinburgh, Edinburgh, United Kingdom.
Simons Initiative for the Developing Brain, University of Edinburgh, Edinburgh, United Kingdom.
Elife. 2022 Dec 23;11:e83008. doi: 10.7554/eLife.83008.
Standard models for spatial and episodic memory suggest that the lateral entorhinal cortex (LEC) and medial entorhinal cortex (MEC) send parallel independent inputs to the hippocampus, each carrying different types of information. Here, we evaluate the possibility that information is integrated between divisions of the entorhinal cortex prior to reaching the hippocampus. We demonstrate that, in mice, fan cells in layer 2 (L2) of LEC that receive neocortical inputs, and that project to the hippocampal dentate gyrus, also send axon collaterals to layer 1 (L1) of the MEC. Activation of inputs from fan cells evokes monosynaptic glutamatergic excitation of stellate and pyramidal cells in L2 of the MEC, typically followed by inhibition that contains fast and slow components mediated by GABA and GABA receptors, respectively. Inputs from fan cells also directly activate interneurons in L1 and L2 of MEC, with synaptic connections from L1 interneurons accounting for slow feedforward inhibition of L2 principal cell populations. The relative strength of excitation and inhibition following fan cell activation differs substantially between neurons and is largely independent of anatomical location. Our results demonstrate that the LEC, in addition to directly influencing the hippocampus, can activate or inhibit major hippocampal inputs arising from the MEC. Thus, local circuits in the superficial MEC may combine spatial information with sensory and higher order signals from the LEC, providing a substrate for integration of 'what' and 'where' components of episodic memories.
空间和情景记忆的标准模型表明,外侧内嗅皮层(LEC)和内侧内嗅皮层(MEC)向海马体发送平行的独立输入,每个输入携带不同类型的信息。在这里,我们评估了在到达海马体之前,信息在内嗅皮层各部分之间整合的可能性。我们证明,在小鼠中,接收新皮层输入并投射到海马齿状回的 LEC 层 2(L2)的扇形细胞也向 MEC 的层 1(L1)发出轴突侧支。扇形细胞输入的激活会引发 MEC L2 中的星状细胞和锥体细胞的单突触谷氨酸能兴奋,通常随后是由 GABA 和 GABA 受体分别介导的快速和慢速成分的抑制。扇形细胞的输入也直接激活 MEC 的 L1 和 L2 中的中间神经元,并且来自 L1 中间神经元的突触连接构成了 L2 主要细胞群体的慢速前馈抑制。扇形细胞激活后兴奋和抑制的相对强度在神经元之间有很大差异,并且在很大程度上与解剖位置无关。我们的结果表明,LEC 除了直接影响海马体外,还可以激活或抑制来自 MEC 的主要海马体输入。因此,浅层 MEC 中的局部回路可以将空间信息与来自 LEC 的感觉和更高阶信号相结合,为情景记忆的“什么”和“哪里”成分的整合提供基础。