JunB is a repressor of MMP-9 transcription in depolarized rat brain neurons

Matrix Metalloproteinase-9 (MMP-9) is an extracellularly operating enzyme involved in the synaptic plasticity, hippocampal-dependent long term memory and neurodegeneration. Previous studies have shown its upregulation following seizure-evoking stimuli. Herein, we show that in the rat brain, MMP-9 mR...

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Veröffentlicht in:Molecular and cellular neuroscience 2009-01, Vol.40 (1), p.98-110
Hauptverfasser: Rylski, Marcin, Amborska, Renata, Zybura, Katarzyna, Michaluk, Piotr, Bielinska, Beata, Konopacki, Filip A., Wilczynski, Grzegorz M., Kaczmarek, Leszek
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Sprache:eng
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Zusammenfassung:Matrix Metalloproteinase-9 (MMP-9) is an extracellularly operating enzyme involved in the synaptic plasticity, hippocampal-dependent long term memory and neurodegeneration. Previous studies have shown its upregulation following seizure-evoking stimuli. Herein, we show that in the rat brain, MMP-9 mRNA expression in response to pentylenetetrazole-evoked neuronal depolarization is transient. Furthermore, we demonstrate that in the rat hippocampus neuronal activation strongly induces JunB expression, simultaneously leading to an accumulation of JunB/FosB complexes onto the − 88/− 80 bp site of the rat MMP-9 gene promoter in vivo. Surprisingly, manipulations with JunB expression levels in activated neurons revealed its moderate repressive action onto MMP-9 gene expression. Therefore, our study documents the active repressive influence of AP-1 onto MMP-9 transcriptional regulation by the engagement of JunB.
ISSN:1044-7431
1095-9327
DOI:10.1016/j.mcn.2008.09.005