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Publication : Aggrecan Directs Extracellular Matrix-Mediated Neuronal Plasticity.

First Author  Rowlands D Year  2018
Journal  J Neurosci Volume  38
Issue  47 Pages  10102-10113
PubMed ID  30282728 Mgi Jnum  J:267250
Mgi Id  MGI:6258415 Doi  10.1523/JNEUROSCI.1122-18.2018
Citation  Rowlands D, et al. (2018) Aggrecan Directs Extracellular Matrix-Mediated Neuronal Plasticity. J Neurosci 38(47):10102-10113
abstractText  In the adult brain, the extracellular matrix (ECM) influences recovery after injury, susceptibility to mental disorders, and is in general a strong regulator of neuronal plasticity. The proteoglycan aggrecan is a core component of the condensed ECM structures termed perineuronal nets (PNNs), and the specific role of PNNs on neural plasticity remains elusive. Here, we genetically targeted the Acan gene encoding for aggrecan using a novel animal model. This allowed for conditional and targeted loss of aggrecan in vivo, which ablated the PNN structure and caused a shift in the population of parvalbumin-expressing inhibitory interneurons toward a high plasticity state. Selective deletion of the Acan gene in the visual cortex of male adult mice reinstated juvenile ocular dominance plasticity, which was mechanistically identical to critical period plasticity. Brain-wide targeting improved object recognition memory.SIGNIFICANCE STATEMENT The study provides the first direct evidence of aggrecan as the main functional constituent and orchestrator of perineuronal nets (PNNs), and that loss of PNNs by aggrecan removal induces a permanent state of critical period-like plasticity. Loss of aggrecan ablates the PNN structure, resulting in invoked juvenile plasticity in the visual cortex and enhanced object recognition memory.
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