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[Preprint]. 2024 Apr 25:2024.04.23.590812.
doi: 10.1101/2024.04.23.590812.

Synaptic architecture of a memory engram in the mouse hippocampus

Synaptic architecture of a memory engram in the mouse hippocampus

Marco Uytiepo et al. bioRxiv. .

Update in

  • Synaptic architecture of a memory engram in the mouse hippocampus.
    Uytiepo M, Zhu Y, Bushong E, Chou K, Polli FS, Zhao E, Kim KY, Luu D, Chang L, Yang D, Ma TC, Kim M, Zhang Y, Walton G, Quach T, Haberl M, Patapoutian L, Shahbazi A, Zhang Y, Beutter E, Zhang W, Dong B, Khoury A, Gu A, McCue E, Stowers L, Ellisman M, Maximov A. Uytiepo M, et al. Science. 2025 Mar 21;387(6740):eado8316. doi: 10.1126/science.ado8316. Epub 2025 Mar 21. Science. 2025. PMID: 40112060 Free PMC article.

Abstract

Memory engrams are formed through experience-dependent remodeling of neural circuits, but their detailed architectures have remained unresolved. Using 3D electron microscopy, we performed nanoscale reconstructions of the hippocampal CA3-CA1 pathway following chemogenetic labeling of cellular ensembles with a remote history of correlated excitation during associative learning. Projection neurons involved in memory acquisition expanded their connectomes via multi-synaptic boutons without altering the numbers and spatial arrangements of individual axonal terminals and dendritic spines. This expansion was driven by presynaptic activity elicited by specific negative valence stimuli, regardless of the co-activation state of postsynaptic partners. The rewiring of initial ensembles representing an engram coincided with local, input-specific changes in the shapes and organelle composition of glutamatergic synapses, reflecting their weights and potential for further modifications. Our findings challenge the view that the connectivity among neuronal substrates of memory traces is governed by Hebbian mechanisms, and offer a structural basis for representational drifts.

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