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Kainate-elicited seizures induce mRNA encoding a CaMK-related peptide: a putative modulator of kinase activity in rat
E Vreugdenhil1, N Datson, B Engels
1Division of Medical Pharmacology, Leiden/Amsterdam Center for Drug Research, Leiden University, The Netherlands.
Abstract:
By means of differential display techniques, we have previously identified an mRNA transcript whose expression is highly induced in the rat hippocampus by kainate-elicited seizures. Here, we report the cloning of a corresponding cDNA encoding a 55-amino-acid, serine-rich peptide which contains four predicted phosphorylation sites. The peptide was designated CaMK-related peptide (CARP) as it shares significant amino acid sequence identity with part of a novel putative calcium/calmodulin-dependent kinase (CaMK-VI) that was also cloned in this study. It appears that CARP and CaMK-VI are derived from the same gene through differential splicing. Intriguingly, CARP also exhibits 64% amino acid sequence identity with the C-terminal part of human doublecortin, encoded by a recently identified gene which is mutated in patients with X-linked lissencephaly and the double-cortex syndrome. In addition, the structure of CARP resembles the autoinhibitory, serine-rich N-terminal domain of CaMK-IV, suggesting a possible modulatory role of CARP with respect to CaMK activity. Northern blot analysis and in situ hybridization experiments showed that CARP mRNA is specifically induced by kainate-elicited seizures in the dentate gyrus and in the pyramidal layers CA1 and CA2, but not in CA3. In contrast, kainate-induced seizures did not change the level of expression of the CaMK-VI gene. We propose that CARP induction leads to the modulation of kinase activity in specific subregions of the rat hippocampus, providing a negative feedback mechanism for seizure-induced kinases.
Insights
Researchers identified a novel peptide, CaMK-related peptide (CARP), induced by seizures in the rat hippocampus. CARP may modulate kinase activity, offering a negative feedback mechanism for seizure-induced kinases.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Kainate-elicited seizures induce specific mRNA transcripts in the rat hippocampus.
- Understanding molecular responses to seizures is crucial for neurological research.
Purpose of the Study:
- To clone and characterize a seizure-induced mRNA transcript from the rat hippocampus.
- To investigate the function and regulation of the novel peptide encoded by this transcript.
Main Methods:
- Differential display techniques to identify mRNA transcripts.
- cDNA cloning and sequencing.
- Northern blot analysis and in situ hybridization.
Main Results:
- Cloned a cDNA encoding a 55-amino-acid peptide, CaMK-related peptide (CARP).
- CARP shares sequence identity with CaMK-VI and human doublecortin.
- CARP mRNA is specifically induced by kainate in hippocampal subregions (dentate gyrus, CA1, CA2), unlike CaMK-VI.
- CARP structure suggests a modulatory role in kinase activity.
Conclusions:
- CARP is a seizure-induced peptide in the rat hippocampus.
- CARP likely modulates kinase activity, potentially acting as a negative feedback mechanism against seizure-induced kinases.