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Perineuronal nets stabilize the grid cell network

Nature Communications · 2021 · Vol. 12(1) · pp. 253–253
Ane Charlotte ChristensenKristian Kinden LensjøMikkel Elle LepperødSvenn-Arne DraglyHalvard SutterudJan Sigurd BlackstadMarianne FyhnTorkel Hafting

Abstract

Grid cells are part of a widespread network which supports navigation and spatial memory. Stable grid patterns appear late in development, in concert with extracellular matrix aggregates termed perineuronal nets (PNNs) that condense around inhibitory neurons. It has been suggested that PNNs stabilize synaptic connections and long-term memories, but their role in the grid cell network remains elusive. We show that removal of PNNs leads to lower inhibitory spiking activity, and reduces grid cells' ability to create stable representations of a novel environment. Furthermore, in animals with disrupted PNNs, exposure to a novel arena corrupted the spatiotemporal relationships within grid cell modules, and the stored representations of a familiar arena. Finally, we show that PNN removal in entorhinal cortex distorted spatial representations in downstream hippocampal neurons. Together this work suggests that PNNs provide a key stabilizing element for the grid cell network.

Proteoglycans and glycosaminoglycans researchNeuroscience and Neuropharmacology ResearchPhotoreceptor and optogenetics researchPerineuronal netGrid cellHippocampal formationEntorhinal cortexNeuroscienceComputer scienceInhibitory postsynaptic potentialGridHippocampusNerve net

MeSH terms

Grid CellsAction PotentialsAnimalsComputer SimulationHippocampusMaleModels, NeurologicalNeuronsTheta RhythmTime FactorsEntorhinal CortexRats, Long-EvansRats

Funding

  • Universitetet i Oslo
  • Norges Forskningsråd
Citations
1,846
FWCI
171.64
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76
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Nature reviews. Neuroscience · 2005 · 2,314 citations
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