Published July 28, 1997 | Version v1
Journal article

Temporal pattern of AP-1 DNA-binding activity in the rat hippocampus following a kindled seizure

  • 1. Department of Neurology, Okayama University Medical School, 2-5-1, Shikata-cho Okayama (Japan)
  • 2. Clinical Research Institute, National Sanatorium Minamiokayama Hospital, 4066 Hayashima-cho (Japan)
  • 3. Department of Neuropsychiatry, Okayama University Medical School, 2-5-1 Shikata-cho Okayama (Japan)

Description

DNA binding by transcripton factor AP-1 was enhanced remarkably following kindling stimulation in rat amygdala. Maximum increase occurred 2 h after stimulation with return to baseline within 24 h. Supershift and western analyses revealed that 38,000 mol. wt Fos-related antigen and JunD were the main components of the evoked AP-1 complexes at the time their induction reached maximum. AP-1 induction 2 h after the last kindling stimulation was more prominent in samples from previously kindled rats than in those from non-kindled rats. This study sought to establish the role of AP-1 in plastic changes of the hippocampus associated with kindling. Male Sprague-Dawley rats were kindled from the left amygdala until they exhibited Racine [15] class 5 generalized seizures. Nuclear proteins were extracted from dorsal hippocampi obtained from 0 to 24 h after final stimulations. From these, we evaluated the temporal pattern of DNA binding by AP-1 using a gel mobility-shift assay with a 32P-labelled AP-1 probe. Supershift and western analyses were added to investigate components of the seizure-evoked AP-1 complexes. Our results suggest that the basal level of AP-1 complexes is not associated with the seizure susceptibility in kindling. However, development of kindling appears to facilitate stimulus-evoked AP-1 induction, probably via plastic changes in the central nervous system. AP-1 may mediate such changes by regulating expression of certain genes. (Copyright (c) 1997 Elsevier Science B.V., Amsterdam. All rights reserved.)

Additional details

Publishing Information

Journal Title
Neuroscience
Journal Volume
80
Journal Issue
3
Journal Page Range
p. 753-761
ISSN
0306-4522
CODEN
NRSCDN