Literature DB >> 18753382

Glutamate transporters regulate extrasynaptic NMDA receptor modulation of Kv2.1 potassium channels.

Patrick J Mulholland1, Ezekiel P Carpenter-Hyland, Matthew C Hearing, Howard C Becker, John J Woodward, L Judson Chandler.   

Abstract

Delayed-rectifier Kv2.1 potassium channels regulate somatodendritic excitability during periods of repetitive, high-frequency activity. Recent evidence suggests that Kv2.1 channel modulation is linked to glutamatergic neurotransmission. Because NMDA-type glutamate receptors are critical regulators of synaptic plasticity, we investigated NMDA receptor modulation of Kv2.1 channels in rodent hippocampus and cortex. Bath application of NMDA potently unclustered and dephosphorylated Kv2.1 and produced a hyperpolarizing shift in voltage-dependent activation of voltage-sensitive potassium currents (I(K)). In contrast, driving synaptic activity in Mg2+-free media to hyperactivate synaptic NMDA receptors had no effect on Kv2.1 channels, and moderate pentylenetetrazole-induced seizure activity in adult mice did not dephosphorylate hippocampal Kv2.1 channels. Selective activation of extrasynaptic NMDA receptors unclustered and dephosphorylated Kv2.1 channels and produced a hyperpolarizing shift in neuronal I(K). In addition, inhibition of glutamate uptake rapidly activated NMDA receptors and dephosphorylated Kv2.1 channels. These observations demonstrate that regulation of intrinsic neuronal activity by Kv2.1 is coupled to extrasynaptic but not synaptic NMDA receptors. These data support a novel mechanism for glutamate transporters in regulation of neuronal excitability and plasticity through extrasynaptic NMDA receptor modulation of Kv2.1 channels.

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Year:  2008        PMID: 18753382      PMCID: PMC2612131          DOI: 10.1523/JNEUROSCI.2405-08.2008

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  36 in total

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Authors:  Beverley A Clark; Stuart G Cull-Candy
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3.  Automatic and quantitative measurement of protein-protein colocalization in live cells.

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4.  A mechanism for homeostatic plasticity.

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5.  Tonic activation of NMDA receptors by ambient glutamate of non-synaptic origin in the rat hippocampus.

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Review 6.  Glutamate uptake.

Authors:  N C Danbolt
Journal:  Prog Neurobiol       Date:  2001-09       Impact factor: 11.685

7.  [(3)H](2S,4R)-4-Methylglutamate: a novel ligand for the characterization of glutamate transporters.

Authors:  K Apricó; P M Beart; A J Lawrence; D Crawford; R D O'Shea
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8.  Mobile NMDA receptors at hippocampal synapses.

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Journal:  Nat Neurosci       Date:  2004-06-13       Impact factor: 24.884

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  38 in total

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Authors:  Kristen M S O'Connell; Robert Loftus; Michael M Tamkun
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2.  Differential potassium channel gene regulation in BXD mice reveals novel targets for pharmacogenetic therapies to reduce heavy alcohol drinking.

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3.  Induction of stable ER-plasma-membrane junctions by Kv2.1 potassium channels.

Authors:  Philip D Fox; Christopher J Haberkorn; Elizabeth J Akin; Peter J Seel; Diego Krapf; Michael M Tamkun
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Authors:  Patrick J Mulholland; Howard C Becker; John J Woodward; L Judson Chandler
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Review 5.  Voltage-gated potassium channels at the crossroads of neuronal function, ischemic tolerance, and neurodegeneration.

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6.  Regulation of Kv2.1 K(+) conductance by cell surface channel density.

Authors:  Philip D Fox; Rob J Loftus; Michael M Tamkun
Journal:  J Neurosci       Date:  2013-01-16       Impact factor: 6.167

7.  Structural Similarities between Neuregulin 1-3 Isoforms Determine Their Subcellular Distribution and Signaling Mode in Central Neurons.

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8.  Ethanol disrupts NMDA receptor and astroglial EAAT2 modulation of Kv2.1 potassium channels in hippocampus.

Authors:  Patrick J Mulholland; Ezekiel P Carpenter-Hyland; John J Woodward; L Judson Chandler
Journal:  Alcohol       Date:  2009-02       Impact factor: 2.405

9.  Prolonged Abeta treatment leads to impairment in the ability of primary cortical neurons to maintain K+ and Ca2+ homeostasis.

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10.  Cell type-specific spatial and functional coupling between mammalian brain Kv2.1 K+ channels and ryanodine receptors.

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