Functionally Distinct Neuronal Ensembles within the Memory Engram
Author(s) -
Xiaochen Sun,
Max J. Bernstein,
Meizhen Meng,
Siyuan Rao,
Andreas T. Sørensen,
Li Yao,
Xiaohui Zhang,
Polina Anikeeva,
Yingxi Lin
Publication year - 2020
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2020.02.055
Subject(s) - engram , neuroscience , biology , entorhinal cortex , hippocampus , excitatory postsynaptic potential , inhibitory postsynaptic potential , prefrontal cortex , cognition
Memories are believed to be encoded by sparse ensembles of neurons in the brain. However, it remains unclear whether there is functional heterogeneity within individual memory engrams, i.e., if separate neuronal subpopulations encode distinct aspects of the memory and drive memory expression differently. Here, we show that contextual fear memory engrams in the mouse dentate gyrus contain functionally distinct neuronal ensembles, genetically defined by the Fos- or Npas4-dependent transcriptional pathways. The Fos-dependent ensemble promotes memory generalization and receives enhanced excitatory synaptic inputs from the medial entorhinal cortex, which we find itself also mediates generalization. The Npas4-dependent ensemble promotes memory discrimination and receives enhanced inhibitory drive from local cholecystokinin-expressing interneurons, the activity of which is required for discrimination. Our study provides causal evidence for functional heterogeneity within the memory engram and reveals synaptic and circuit mechanisms used by each ensemble to regulate the memory discrimination-generalization balance.
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