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Nucleus accumbens local circuit for cue-dependent aversive learning.


ABSTRACT: Response to threatening environmental stimuli requires detection and encoding of important environmental features that dictate threat. Aversive events are highly salient, which promotes associative learning about stimuli that signal this threat. The nucleus accumbens is uniquely positioned to process this salient, aversive information and promote motivated output, through plasticity on the major projection neurons in the brain area. We describe a nucleus accumbens core local circuit whereby excitatory plasticity facilitates learning and recall of discrete aversive cues. We demonstrate that putative nucleus accumbens substance P release and long-term excitatory plasticity on dopamine 2 receptor-expressing projection neurons are required for cue-dependent fear learning. Additionally, we find that fear learning and recall is dependent on distinct projection neuron subtypes. Our work demonstrates a critical role for nucleus accumbens substance P in cue-dependent aversive learning.

SUBMITTER: Belilos A 

PROVIDER: S-EPMC10795009 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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Nucleus accumbens local circuit for cue-dependent aversive learning.

Belilos Andrew A   Gray Cortez C   Sanders Christie C   Black Destiny D   Mays Elizabeth E   Richie Christopher C   Sengupta Ayesha A   Hake Holly H   Francis T Chase TC  

Cell reports 20231122 12


Response to threatening environmental stimuli requires detection and encoding of important environmental features that dictate threat. Aversive events are highly salient, which promotes associative learning about stimuli that signal this threat. The nucleus accumbens is uniquely positioned to process this salient, aversive information and promote motivated output, through plasticity on the major projection neurons in the brain area. We describe a nucleus accumbens core local circuit whereby exci  ...[more]

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