Prefrontal and lateral entorhinal neurons co-dependently learn item-outcome rules.
basic_science · Level V
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- Record sourced from PubMed, PMID 39169188.
- Also identified by DOI 10.1038/s41586-024-07868-1 and PMC identifier 11484820.
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Abstract
The ability to learn novel items depends on brain functions that store information about items classified by their associated meanings and outcomes<sup>1-4</sup>, but the underlying neural circuit mechanisms of this process remain poorly understood. Here we show that deep layers of the lateral entorhinal cortex (LEC) contain two groups of 'item-outcome neurons': one developing activity for rewarded items during learning, and another for punished items. As mice learned an olfactory item-outcome association, we found that the neuronal population of LEC layers 5/6 (LEC<sub>L5/6</sub>) formed an internal map of pre-learned and novel items, classified into dichotomic rewarded versus punished groups. Neurons in the medial prefrontal cortex (mPFC), which form a bidirectional loop circuit with LEC<sub>L5/6</sub>, developed an equivalent item-outcome rule map during learning. When LEC<sub>L5/6</sub> neurons were optogenetically inhibited, tangled mPFC representations of novel items failed to split into rewarded versus punished groups, impairing new learning by mice. Conversely, when mPFC neurons were inhibited, LEC<sub>L5/6</sub> representations of individual items were held completely separate, disrupting both learning and retrieval of associations. These results suggest that LEC<sub>L5/6</sub> neurons and mPFC neurons co-dependently encode item memory as a map of associated outcome rules.
Medical subject headings
- Entorhinal Cortex
- Learning
- Neurons
- Prefrontal Cortex
- Reward