Literature DB >> 11294928

Differential expression of glutamate and GABA-A receptor subunit mRNA in cortical dysplasia.

P B Crino1, A C Duhaime, G Baltuch, R White.   

Abstract

OBJECTIVE: Focal cortical dysplasia is characterized by disorganized cortical lamination, dysplastic and heterotopic neurons, and an association with epilepsy. The contribution that dysplastic and heterotopic neurons make to epileptogenesis in focal cortical dysplasia is unknown and the phenotype of these cells may be distinct. The authors hypothesized that the expression of genes encoding glutamatergic (glutamate [GluR] and N-methyl-D-aspartate NMDA receptors [NR]) and gamma-aminobutyric acid A receptor (GABA(A)R) subunits is distinct in dysplastic and heterotopic neurons and that changes in receptor gene expression could be defined in a cell-specific pattern.
METHODS: Single immunohistochemically labeled dysplastic and heterotopic neurons were microdissected from human focal cortical dysplasia specimens obtained during epilepsy surgery. Pyramidal neurons were microdissected from postmortem control cortex and from temporal cortex without dysplasia resected during temporal lobectomy. Poly (A) messenger RNA (mRNA) from single neurons was amplified, radiolabeled, and used to probe complementary DNA (cDNA) arrays containing GluR(1-6), NR(1A,1B), NR(2A-D), and GABA(A)Ralpha(1-6), and -Rbeta(1-3) subunit cDNAS: The relative hybridization intensities of each mRNA-cDNA hybrid were quantified by phosphorimaging.
RESULTS: GluR, NR, and GABA(A)R subunit mRNA expression did not differ between control neurons and nondysplastic epilepsy specimens. Expression of GluR(4), NR(2B), and NR(2C) subunit mRNA was increased, and NR(2A) and GABA(A)Rbeta(1) subunit mRNA was decreased in dysplastic compared with pyramidal and heterotopic neurons. In contrast, GABA(A)Ralpha(1), -Ralpha(2), and -Rbeta(2) as well as GluR(1) mRNA levels were reduced in both dysplastic and heterotopic neurons.
CONCLUSIONS: Differential expression of GluR, NR, and GABA(A)R mRNA in dysplastic and heterotopic neurons demonstrates cell specific gene transcription changes in focal cortical dysplasia. These results suggest that dysplastic and heterotopic neurons may be pharmacologically distinct and make differential contributions epileptogenesis in focal cortical dysplasia.

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Year:  2001        PMID: 11294928     DOI: 10.1212/wnl.56.7.906

Source DB:  PubMed          Journal:  Neurology        ISSN: 0028-3878            Impact factor:   9.910


  33 in total

1.  Reelin' in Genes for Cortical Dysplasia.

Authors:  Peter B. Crino
Journal:  Epilepsy Curr       Date:  2001-11       Impact factor: 7.500

2.  Disordered migration of interneurons within focal cortical dysplasia.

Authors:  Jaideep Kapur
Journal:  Epilepsy Curr       Date:  2006 May-Jun       Impact factor: 7.500

Review 3.  Mechanisms of epileptogenesis in tuberous sclerosis complex and related malformations of cortical development with abnormal glioneuronal proliferation.

Authors:  Michael Wong
Journal:  Epilepsia       Date:  2007-08-28       Impact factor: 5.864

4.  Decreased glutamate transport enhances excitability in a rat model of cortical dysplasia.

Authors:  Susan L Campbell; John J Hablitz
Journal:  Neurobiol Dis       Date:  2008-07-15       Impact factor: 5.996

5.  Deletion of Dlx1 results in reduced glutamatergic input to hippocampal interneurons.

Authors:  Daniel L Jones; MacKenzie A Howard; Amelia Stanco; John L R Rubenstein; Scott C Baraban
Journal:  J Neurophysiol       Date:  2011-02-16       Impact factor: 2.714

6.  Enhanced GABAergic network and receptor function in pediatric cortical dysplasia Type IIB compared with Tuberous Sclerosis Complex.

Authors:  Carlos Cepeda; Véronique M André; Jason S Hauptman; Irene Yamazaki; My N Huynh; Julia W Chang; Jane Y Chen; Robin S Fisher; Harry V Vinters; Michael S Levine; Gary W Mathern
Journal:  Neurobiol Dis       Date:  2011-08-23       Impact factor: 5.996

7.  Altered inhibition in tuberous sclerosis and type IIb cortical dysplasia.

Authors:  Delia M Talos; Hongyu Sun; Bela Kosaras; Annelise Joseph; Rebecca D Folkerth; Annapurna Poduri; Joseph R Madsen; Peter M Black; Frances E Jensen
Journal:  Ann Neurol       Date:  2012-03-23       Impact factor: 10.422

8.  The role of voltage dependence of the NMDA receptor in cellular and network oscillation.

Authors:  Amber L Martell; Jan-Marino Ramirez; Robert E Lasky; Jennifer E Dwyer; Michael Kohrman; Wim van Drongelen
Journal:  Eur J Neurosci       Date:  2012-07       Impact factor: 3.386

9.  Irradiation exacerbates cortical cytopathology in the Eker rat model of tuberous sclerosis complex, but does not induce hyperexcitability.

Authors:  Naranzogt Tschuluun; H Jürgen Wenzel; Philip A Schwartzkroin
Journal:  Epilepsy Res       Date:  2006-09-29       Impact factor: 3.045

10.  Animal models of focal cortical dysplasia and tuberous sclerosis complex: recent progress toward clinical applications.

Authors:  Michael Wong
Journal:  Epilepsia       Date:  2009-10       Impact factor: 5.864

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