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Safety Signals Enable Single-Episode Active Avoidance paradigm and Expose Threat Generalization in Tuberous Sclerosis

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    This study introduces a new learning paradigm to understand how animals distinguish threats from safety. Enhanced memory consolidation and specific brain pathways are key for accurate threat discrimination, preventing generalized fear responses.

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    Area of Science:

    • Neuroscience
    • Behavioral Science
    • Molecular Biology

    Background:

    • Adaptive defensive strategies require flexible discrimination between threats and non-threats.
    • Current paradigms often lack temporal dissociation of memory phases.

    Purpose of the Study:

    • Introduce a novel single-episode differential signaled active avoidance (DSAA) paradigm.
    • Investigate the mechanisms of threat-safety memory consolidation and retrieval.
    • Explore the role of oxytocin and mTORC1 signaling in discriminative avoidance memory.

    Main Methods:

    • Utilized the DSAA paradigm with distinct threat-predictive (CS+) and neutral (CS-) cues.
    • Manipulated training parameters (overtraining, threat intensity) and assessed memory retrieval.
    • Examined molecular mechanisms including oxytocin receptors and mTORC1 signaling.
    • Used a Tuberous Sclerosis Complex (Tsc2 haploinsufficient) mouse model.

    Main Results:

    • Differential contingency structure selectively reinforced memory consolidation, not acquisition.
    • Overtraining and high threat intensity led to avoidance generalization.
    • Remote memory retrieval involved medial prefrontal cortex oxytocin receptor cells and mTORC1 signaling.
    • Tsc2-deficient males showed generalized avoidance, a deficit unresponsive to training.

    Conclusions:

    • Oxytocin-modulated translational control is crucial for stabilizing threat-safety discrimination.
    • Disruption of this axis (via excessive threat or Tsc2 deficiency) promotes pathological generalization.
    • Findings provide a framework for understanding safety-learning deficits in disorders like anxiety and neurodevelopmental conditions.