Dendritic Kv4.2 potassium channels selectively mediate spatial pattern separation in the dentate gyrus

ddc:050 Biological sciences 0303 health sciences 03 medical and health sciences Science Q Neuroscience ; Cellular neuroscience ; Biological sciences Cellular neuroscience Article Neuroscience
DOI: 10.1016/j.isci.2021.102876 Publication Date: 2021-07-16T10:03:09Z
ABSTRACT
The capacity to distinguish comparable experiences is fundamental for the recall of similar memories and has been proposed to require pattern separation in the dentate gyrus (DG). However, the cellular mechanisms by which mature granule cells (GCs) of the DG accomplish this function are poorly characterized. Here, we show that Kv4.2 channels selectively modulate the excitability of medial dendrites of dentate GCs. These dendrites are targeted by the medial entorhinal cortex, the main source of spatial inputs to the DG. Accordingly, we found that the spatial pattern separation capability of animals lacking the Kv4.2 channel is significantly impaired. This points to the role of intrinsic excitability in supporting the mnemonic function of the dentate and to the Kv4.2 channel as a candidate substrate promoting spatial pattern separation.
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