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Stress disrupts engram ensembles in lateral amygdala to generalize threat memory in mice. | LitMetric

Article Synopsis

  • Stress can lead to overgeneralized memories related to threats, which is common in various psychiatric disorders.
  • Researchers studied how stress impacts the brain circuits and molecules involved in forming these generalized threat memories in mice, focusing on the lateral amygdala.
  • The study found that specific neurotransmitters and certain brain cells (PV+ interneurons) play a crucial role in this process, and potential treatments targeting these mechanisms could help restore normal memory functions in stressed individuals.

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Article Abstract

Stress induces aversive memory overgeneralization, a hallmark of many psychiatric disorders. Memories are encoded by a sparse ensemble of neurons active during an event (an engram ensemble). We examined the molecular and circuit processes mediating stress-induced threat memory overgeneralization in mice. Stress, acting via corticosterone, increased the density of engram ensembles supporting a threat memory in lateral amygdala, and this engram ensemble was reactivated by both specific and non-specific retrieval cues (generalized threat memory). Furthermore, we identified a critical role for endocannabinoids, acting retrogradely on parvalbumin-positive (PV+) lateral amygdala interneurons in the formation of a less-sparse engram and memory generalization induced by stress. Glucocorticoid receptor antagonists, endocannabinoid synthesis inhibitors, increasing PV+ neuronal activity, and knocking down cannabinoid receptors in lateral amygdala PV+ neurons restored threat memory specificity and a sparse engram in stressed mice. These findings offer insights into stress-induced memory alterations, providing potential therapeutic avenues for stress-related disorders.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11726195PMC
http://dx.doi.org/10.1016/j.cell.2024.10.034DOI Listing

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