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Systems consolidation induces multiple memory engrams for a flexible recall strategy in observational fear memory in male mice

Author

Listed:
  • Joseph I. Terranova

    (University of Texas Southwestern Medical Center
    Midwestern University)

  • Jun Yokose

    (University of Texas Southwestern Medical Center)

  • Hisayuki Osanai

    (University of Texas Southwestern Medical Center)

  • Sachie K. Ogawa

    (University of Texas Southwestern Medical Center)

  • Takashi Kitamura

    (University of Texas Southwestern Medical Center
    University of Texas Southwestern Medical Center)

Abstract

Observers learn to fear the context in which they witnessed a demonstrator’s aversive experience, called observational contextual fear conditioning (CFC). The neural mechanisms governing whether recall of the observational CFC memory occurs from the observer’s own or from the demonstrator’s point of view remain unclear. Here, we show in male mice that recent observational CFC memory is recalled in the observer’s context only, but remote memory is recalled in both observer and demonstrator contexts. Recall of recent memory in the observer’s context requires dorsal hippocampus activity, while recall of remote memory in both contexts requires the medial prefrontal cortex (mPFC)-basolateral amygdala pathway. Although mPFC neurons activated by observational CFC are involved in remote recall in both contexts, distinct mPFC subpopulations regulate remote recall in each context. Our data provide insights into a flexible recall strategy and the functional reorganization of circuits and memory engram cells underlying observational CFC memory.

Suggested Citation

  • Joseph I. Terranova & Jun Yokose & Hisayuki Osanai & Sachie K. Ogawa & Takashi Kitamura, 2023. "Systems consolidation induces multiple memory engrams for a flexible recall strategy in observational fear memory in male mice," Nature Communications, Nature, vol. 14(1), pages 1-15, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-39718-5
    DOI: 10.1038/s41467-023-39718-5
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    1. Seung Wook Oh & Julie A. Harris & Lydia Ng & Brent Winslow & Nicholas Cain & Stefan Mihalas & Quanxin Wang & Chris Lau & Leonard Kuan & Alex M. Henry & Marty T. Mortrud & Benjamin Ouellette & Thuc Ngh, 2014. "A mesoscale connectome of the mouse brain," Nature, Nature, vol. 508(7495), pages 207-214, April.
    2. Edmond Teng & Larry R. Squire, 1999. "Memory for places learned long ago is intact after hippocampal damage," Nature, Nature, vol. 400(6745), pages 675-677, August.
    3. Woong Bin Kim & Jun-Hyeong Cho, 2020. "Encoding of contextual fear memory in hippocampal–amygdala circuit," Nature Communications, Nature, vol. 11(1), pages 1-22, December.
    4. Lisa C. Dandolo & Lars Schwabe, 2018. "Time-dependent memory transformation along the hippocampal anterior–posterior axis," Nature Communications, Nature, vol. 9(1), pages 1-11, December.
    5. Xu Liu & Steve Ramirez & Petti T. Pang & Corey B. Puryear & Arvind Govindarajan & Karl Deisseroth & Susumu Tonegawa, 2012. "Optogenetic stimulation of a hippocampal engram activates fear memory recall," Nature, Nature, vol. 484(7394), pages 381-385, April.
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