bioRxiv · 10.1101/2022.11.29.518458
Hippocampal engram networks for fear memory recruit new synapses and modify pre-existing synapses in vivo.
Abstract
As basic units of neural networks, ensembles of synapses underlie cognitive functions like learning and memory. These synaptic engrams show elevated synaptic density among engram cells following contextual fear memory formation. Subsequent analysis of the CA3-CA1 engram synapse revealed larger spine sizes, as the synaptic connectivity correlated to the memory strength. Here, we elucidate the synapse dynamics between CA3 and CA1 by tracking identical synapses at multiple time points by adapting two-photon microscopy and dual-eGRASP technique in vivo. After memory formation, synaptic connections between engram populations are enhanced in conjunction with synaptogenesis within the hippocampal network. However, extinction learning specifically correlated with the disappearance of CA3 engram to CA1 engram (E-E) synapses. We observed "newly formed" synapses near pre-existing synapses, which clustered CA3-CA1 engram synapses after fear memory formation. Overall, we conclude that dynamics at CA3 to CA1 E-E synapses are key sites for modification during fear memory states. HighlightsO_LIWe adapted four-color two-photon microscopy with dual-eGRASP for a longitudinal observation of synaptic connections between CA3 and CA1. C_LIO_LISynaptogenesis according to fear memory formation was specifically observed in E-E synapses. C_LIO_LIExtinction learning significantly correlated with the disappearance of E-E synapses. C_LIO_LIParticular distribution pattern of newly formed E-E synapses was observed after memory formation. C_LI
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Lee, C., Lee, B. H., Jung, H., Sung, Y., Kim, H., Kim, J., Shim, J. Y., Kim, J.-i., Choi, D. I., Park, H. Y., Kaang, B.-K.. 2022-12-01. Hippocampal engram networks for fear memory recruit new synapses and modify pre-existing synapses in vivo.. https://doi.org/10.1101/2022.11.29.518458
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