Literature DB >> 10925151

Chronic DeltaFosB expression and increased AP-1 transcription factor binding are associated with the long term plasticity changes in epilepsy.

T A Morris1, N Jafari, R J DeLorenzo.   

Abstract

NMDA receptor activation during status epilepticus (SE) has previously been shown to be required for epileptogenesis as well as the persistent upregulation of serum response factor (SRF) in the in vivo pilocarpine model of epilepsy. SRF is established as a regulator of the FosB gene which expresses FosB and DeltaFosB components of the AP-1 transcription factor complex. Therefore we investigated whether DeltaFosB expression and AP-1 DNA binding were also persistently elevated in pilocarpine-treated rats which chronically displayed spontaneous seizures. Using hippocampal nuclear extracts, DeltaFosB expression and AP-1 DNA binding were significantly elevated for up to one year in the epileptic animals. The expression of other fos and jun proteins was not persistently altered in epilepsy. Neuronal upregulation of DeltaFosB was correlated with regions of the brain that were involved in seizure generation and propagation. The increase in AP-1 DNA binding was shown to be dependent on NMDA receptor activation during SE. Hippocampal DeltaFosB immunostaining was seen predominately in the neuronal nuclei as opposed to other cell types. The data indicate that recurrent seizures which persistently occur in this model were not responsible for the increased DeltaFosB expression. Chronic DeltaFosB expression in epilepsy may be playing a role in the altered expression of other genes in this model and may be involved in some of the neuronal plasticity changes associated with epileptogenesis.

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Year:  2000        PMID: 10925151     DOI: 10.1016/s0169-328x(00)00112-1

Source DB:  PubMed          Journal:  Brain Res Mol Brain Res        ISSN: 0169-328X


  18 in total

1.  An organotypic hippocampal slice culture model of excitotoxic injury induced spontaneous recurrent epileptiform discharges.

Authors:  Julie M Ziobro; Laxmikant S Deshpande; Robert J Delorenzo
Journal:  Brain Res       Date:  2010-11-25       Impact factor: 3.252

2.  Impaired activation of CA3 pyramidal neurons in the epileptic hippocampus.

Authors:  Giuseppe Biagini; Giovanna D'Arcangelo; Enrica Baldelli; Margherita D'Antuono; Virginia Tancredi; Massimo Avoli
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3.  Overexpression screen in Drosophila identifies neuronal roles of GSK-3 beta/shaggy as a regulator of AP-1-dependent developmental plasticity.

Authors:  A L Franciscovich; A D Vrailas Mortimer; A A Freeman; J Gu; S Sanyal
Journal:  Genetics       Date:  2008-10-01       Impact factor: 4.562

Review 4.  Cellular mechanisms underlying acquired epilepsy: the calcium hypothesis of the induction and maintainance of epilepsy.

Authors:  Robert J Delorenzo; David A Sun; Laxmikant S Deshpande
Journal:  Pharmacol Ther       Date:  2004-12-09       Impact factor: 12.310

Review 5.  Epilepsy as an example of neural plasticity.

Authors:  Helen E Scharfman
Journal:  Neuroscientist       Date:  2002-04       Impact factor: 7.519

6.  Evidence that injury-induced changes in hippocampal neuronal calcium dynamics during epileptogenesis cause acquired epilepsy.

Authors:  Mohsin Raza; Robert E Blair; Sompong Sombati; Dawn S Carter; Laxmikant S Deshpande; Robert J DeLorenzo
Journal:  Proc Natl Acad Sci U S A       Date:  2004-12-06       Impact factor: 11.205

7.  Increased neuronal nuclear calcium influx in neonatal seizures.

Authors:  Ignacio Valencia; Om P Mishra; Karen Fritz; Alan Zubrow; Christos D Katsetos; Maria Delivoria-Papadopoulos; Agustín Legido
Journal:  Neurochem Res       Date:  2006-09-27       Impact factor: 3.996

8.  Traumatic brain injury causes a long-lasting calcium (Ca2+)-plateau of elevated intracellular Ca levels and altered Ca2+ homeostatic mechanisms in hippocampal neurons surviving brain injury.

Authors:  David A Sun; Laxmikant S Deshpande; Sompong Sombati; Anya Baranova; Margaret S Wilson; Robert J Hamm; Robert J DeLorenzo
Journal:  Eur J Neurosci       Date:  2008-03-25       Impact factor: 3.386

9.  Temporal characterization of changes in hippocampal cannabinoid CB(1) receptor expression following pilocarpine-induced status epilepticus.

Authors:  Katherine W Falenski; Dawn S Carter; Anne J Harrison; Billy R Martin; Robert E Blair; Robert J DeLorenzo
Journal:  Brain Res       Date:  2009-01-31       Impact factor: 3.252

10.  Long-term decrease in calbindin-D28K expression in the hippocampus of epileptic rats following pilocarpine-induced status epilepticus.

Authors:  Dawn S Carter; Anne J Harrison; Katherine W Falenski; Robert E Blair; Robert J DeLorenzo
Journal:  Epilepsy Res       Date:  2008-04-03       Impact factor: 3.045

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