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Updated: Mar 6, 2026

Extinction Training During the Reconsolidation Window Prevents Recovery of Fear
Published on: August 24, 2012
A neuromodulatory circuit-to-molecular pathway for reformatting aversive memories during recall
Bao Zhen Tan1, Jessica Natali Sulkes Cuevas2, Reiko Yoshida1
1RIKEN Center for Brain Science, 2-1 Hirosawa, Wako-shi, 351-0198 Saitama, Japan.
Abstract:
Memories can be altered when they are recalled through the process of reconsolidation, requiring gene expression in brain cells that store these memories. How brain circuits reformat memories during recall by directing molecular signaling in specific neuronal populations is not known. Here, we show that brainstem noradrenaline projections to the amygdala, a brain region that stores aversive emotional memories, control memory reconsolidation in rats. During reconsolidation, this circuit regulates the nuclear translocation of CREB-regulated transcriptional coactivator-1 (CRTC1), a molecule important for synapse-to-nucleus transcriptional regulation, through β2-adrenergic receptor (β2-AR) signaling. Cell-type-specific molecular manipulations revealed that reconsolidation requires both β2-AR signaling and CRTC1 in an anatomically and genetically defined amygdala cell population. Finally, increasing stress prior to memory recall enhanced reconsolidation, an effect that was mimicked by amygdala cell-type-specific upregulation of noradrenaline signaling. These results reveal a circuit-to-molecular pathway for state-dependent modification of emotional memories during recall.
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