Literature DB >> 20463230

Downregulation of dendritic HCN channel gating in epilepsy is mediated by altered phosphorylation signaling.

Sangwook Jung1, James B Bullis, Ignatius H Lau, Terrance D Jones, Lindsay N Warner, Nicholas P Poolos.   

Abstract

The onset of spontaneous seizures in the pilocarpine model of epilepsy causes a hyperpolarized shift in the voltage-dependent activation of hyperpolarization-activated cyclic nucleotide-gated (HCN) channel-mediated current (Ih) in CA1 hippocampal pyramidal neuron dendrites, contributing to neuronal hyperexcitability and possibly to epileptogenesis. However, the specific mechanisms by which spontaneous seizures cause downregulation of HCN channel gating are yet unknown. We asked whether the seizure-dependent downregulation of HCN channel gating was due to altered phosphorylation signaling mediated by the phosphatase calcineurin (CaN) or the kinase p38 mitogen-activated protein kinase (p38 MAPK). We first found that CaN inhibition upregulated HCN channel gating and reduced neuronal excitability under normal conditions, showing that CaN is a strong modulator of HCN channels. We then found that an in vitro model of seizures (1 h in 0 Mg2+ and 50 microM bicuculline at 35-37 degrees C) reproduced the HCN channel gating change seen in vivo. Pharmacological inhibition of CaN or activation of p38 MAPK partially reversed the in vitro seizure-induced hyperpolarized shift in HCN channel gating, and the shift was fully reversed by the combination of CaN inhibition and p38 MAPK activation. We then demonstrated enhanced CaN activity as well as reduced p38 MAPK activity in vivo in the CA1 hippocampal area of chronically epileptic animals. Pharmacological reversal of these phosphorylation changes restored HCN channel gating downregulation and neuronal hyperexcitability in epileptic tissue to control levels. Together, these results suggest that alteration of two different phosphorylation pathways in epilepsy contributes to the downregulation of HCN channel gating, which consequently produces neuronal hyperexcitability and thus may be a target for novel antiepileptic therapies.

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Year:  2010        PMID: 20463230      PMCID: PMC2881658          DOI: 10.1523/JNEUROSCI.1290-10.2010

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


  54 in total

1.  Activity and expression of JNK1, p38 and ERK kinases, c-Jun N-terminal phosphorylation, and c-jun promoter binding in the adult rat brain following kainate-induced seizures.

Authors:  K Mielke; S Brecht; A Dorst; T Herdegen
Journal:  Neuroscience       Date:  1999       Impact factor: 3.590

2.  Dendritic Ih normalizes temporal summation in hippocampal CA1 neurons

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Journal:  Nat Neurosci       Date:  1999-09       Impact factor: 24.884

Review 3.  The HCN gene family: molecular basis of the hyperpolarization-activated pacemaker channels.

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Journal:  Ann N Y Acad Sci       Date:  1999-04-30       Impact factor: 5.691

Review 4.  Effects of serine/threonine protein phosphatases on ion channels in excitable membranes.

Authors:  S Herzig; J Neumann
Journal:  Physiol Rev       Date:  2000-01       Impact factor: 37.312

5.  A selective role of calcineurin aalpha in synaptic depotentiation in hippocampus.

Authors:  M Zhuo; W Zhang; H Son; I Mansuy; R A Sobel; J Seidman; E R Kandel
Journal:  Proc Natl Acad Sci U S A       Date:  1999-04-13       Impact factor: 11.205

6.  Calcium modulation of vascular smooth muscle ATP-sensitive K(+) channels: role of protein phosphatase-2B.

Authors:  A J Wilson; R I Jabr; L H Clapp
Journal:  Circ Res       Date:  2000-11-24       Impact factor: 17.367

7.  The mitogen-activated protein kinase cascade couples PKA and PKC to cAMP response element binding protein phosphorylation in area CA1 of hippocampus.

Authors:  E D Roberson; J D English; J P Adams; J C Selcher; C Kondratick; J D Sweatt
Journal:  J Neurosci       Date:  1999-06-01       Impact factor: 6.167

8.  The course of untreated seizures in the pilocarpine model of epilepsy.

Authors:  R M Arida; F A Scorza; C A Peres; E A Cavalheiro
Journal:  Epilepsy Res       Date:  1999-04       Impact factor: 3.045

9.  Activation of JNK and p38 in rat hippocampus after kainic acid induced seizure.

Authors:  S H Jeon; Y S Kim; C D Bae; J B Park
Journal:  Exp Mol Med       Date:  2000-12-31       Impact factor: 8.718

10.  Chronic inhibition of Ca(2+)/calmodulin kinase II activity in the pilocarpine model of epilepsy.

Authors:  S B Churn; L D Kochan; R J DeLorenzo
Journal:  Brain Res       Date:  2000-09-01       Impact factor: 3.252

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  43 in total

1.  Hyperpolarization-activated cation current Ih of dentate gyrus granule cells is upregulated in human and rat temporal lobe epilepsy.

Authors:  Rainer Surges; Maria Kukley; Amy Brewster; Christiane Rüschenschmidt; Johannes Schramm; Tallie Z Baram; Heinz Beck; Dirk Dietrich
Journal:  Biochem Biophys Res Commun       Date:  2012-03-03       Impact factor: 3.575

Review 2.  Exploring HCN channels as novel drug targets.

Authors:  Otilia Postea; Martin Biel
Journal:  Nat Rev Drug Discov       Date:  2011-11-18       Impact factor: 84.694

3.  Dephosphorylation proves detrimental to GABAergic inhibition.

Authors:  Nicholas P Poolos
Journal:  Epilepsy Curr       Date:  2012-01       Impact factor: 7.500

4.  Differential expression of HCN subunits alters voltage-dependent gating of h-channels in CA1 pyramidal neurons from dorsal and ventral hippocampus.

Authors:  Kelly A Dougherty; Daniel A Nicholson; Laurea Diaz; Eric W Buss; Krystina M Neuman; Dane M Chetkovich; Daniel Johnston
Journal:  J Neurophysiol       Date:  2013-01-16       Impact factor: 2.714

5.  Effects of pentylenetetrazole kindling on mitogen-activated protein kinases levels in neocortex and hippocampus of mice.

Authors:  Juliana Ben; Paulo Alexandre de Oliveira; Filipe Marques Gonçalves; Tanara Vieira Peres; Filipe Carvalho Matheus; Alexandre Ademar Hoeller; Rodrigo Bainy Leal; Roger Walz; Rui Daniel Prediger
Journal:  Neurochem Res       Date:  2014-10-15       Impact factor: 3.996

6.  Protein kinase C bidirectionally modulates Ih and hyperpolarization-activated cyclic nucleotide-gated (HCN) channel surface expression in hippocampal pyramidal neurons.

Authors:  Aaron D Williams; Sangwook Jung; Nicholas P Poolos
Journal:  J Physiol       Date:  2015-05-22       Impact factor: 5.182

7.  Traumatic Brain Injury Causes a Tacrolimus-Sensitive Increase in Non-Convulsive Seizures in a Rat Model of Post-Traumatic Epilepsy.

Authors:  John N Campbell; Anandh Gandhi; Baljinderjit Singh; Severn B Churn
Journal:  Int J Neurol Brain Disord       Date:  2014

Review 8.  HCN channelopathies: pathophysiology in genetic epilepsy and therapeutic implications.

Authors:  Christopher A Reid; A Marie Phillips; Steven Petrou
Journal:  Br J Pharmacol       Date:  2012-01       Impact factor: 8.739

Review 9.  Hyperpolarization-Activated Cyclic Nucleotide-Gated (HCN) Channels in Epilepsy.

Authors:  Gary P Brennan; Tallie Z Baram; Nicholas P Poolos
Journal:  Cold Spring Harb Perspect Med       Date:  2016-03-01       Impact factor: 6.915

10.  MPP(+) -dependent inhibition of Ih reduces spontaneous activity and enhances EPSP summation in nigral dopamine neurons.

Authors:  A Masi; R Narducci; E Landucci; F Moroni; G Mannaioni
Journal:  Br J Pharmacol       Date:  2013-05       Impact factor: 8.739

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