Oligodendrocyte precursor cells (OPCs), a major glial cell type that gives rise to myelinating oligodendrocytes in the CNS, express calcium-permeable AMPA receptors (CP-AMPARs). Although CP-AMPARs are important for OPC proliferation and neuron-glia signaling, they render OPCs susceptible to ischemic damage in early development. We identified factors controlling the dynamic regulation of AMPAR subtypes in OPCs from rat optic nerve and mouse cerebellar cortex. We found that activation of group 1 mGluRs drove an increase in the proportion of CP-AMPARs, reflected by an increase in single-channel conductance and inward rectification. This plasticity required the elevation of intracellular calcium and used PI3K, PICK-1 and the JNK pathway. In white matter, neurons and astrocytes release both ATP and glutamate. Unexpectedly, activation of purinergic receptors in OPCs decreased CP-AMPAR expression, suggesting a capacity for homeostatic regulation. Finally, we found that stargazin-related transmembrane AMPAR regulatory proteins, which are critical for AMPAR surface expression in neurons, regulate CP-AMPAR plasticity in OPCs.

Bidirectional plasticity of calcium-permeable AMPA receptors in oligodendrocyte lineage cells / Marzieh, Zonouzi; Renzi, Massimiliano; Mark, Farrant; Stuart G., Cull Candy. - In: NATURE NEUROSCIENCE. - ISSN 1097-6256. - STAMPA. - 14:11(2011), pp. 1430-1438. [10.1038/nn.2942]

Bidirectional plasticity of calcium-permeable AMPA receptors in oligodendrocyte lineage cells

RENZI, Massimiliano;
2011

Abstract

Oligodendrocyte precursor cells (OPCs), a major glial cell type that gives rise to myelinating oligodendrocytes in the CNS, express calcium-permeable AMPA receptors (CP-AMPARs). Although CP-AMPARs are important for OPC proliferation and neuron-glia signaling, they render OPCs susceptible to ischemic damage in early development. We identified factors controlling the dynamic regulation of AMPAR subtypes in OPCs from rat optic nerve and mouse cerebellar cortex. We found that activation of group 1 mGluRs drove an increase in the proportion of CP-AMPARs, reflected by an increase in single-channel conductance and inward rectification. This plasticity required the elevation of intracellular calcium and used PI3K, PICK-1 and the JNK pathway. In white matter, neurons and astrocytes release both ATP and glutamate. Unexpectedly, activation of purinergic receptors in OPCs decreased CP-AMPAR expression, suggesting a capacity for homeostatic regulation. Finally, we found that stargazin-related transmembrane AMPAR regulatory proteins, which are critical for AMPAR surface expression in neurons, regulate CP-AMPAR plasticity in OPCs.
2011
tarps; calcium-permeable ampa receptors; ng2 cells; synaptic plasticity; opcs
01 Pubblicazione su rivista::01a Articolo in rivista
Bidirectional plasticity of calcium-permeable AMPA receptors in oligodendrocyte lineage cells / Marzieh, Zonouzi; Renzi, Massimiliano; Mark, Farrant; Stuart G., Cull Candy. - In: NATURE NEUROSCIENCE. - ISSN 1097-6256. - STAMPA. - 14:11(2011), pp. 1430-1438. [10.1038/nn.2942]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/435439
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