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The Neurotrophic Activity of PACAP on Rat Cerebellar Granule Cells Is Associated with Activation of the Protein Kinase A Pathway and c‐fos Gene Expression a,
Author(s) -
VAUDRY D.,
BASILLE M.,
ANOUAR Y.,
FOURNIER A.,
VAUDRY H.,
GONZALEZ B. J.
Publication year - 1998
Publication title -
annals of the new york academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.712
H-Index - 248
eISSN - 1749-6632
pISSN - 0077-8923
DOI - 10.1111/j.1749-6632.1998.tb11167.x
Subject(s) - neurotrophin , adenylyl cyclase , granule (geology) , gene expression , granule cell , neurite , chemistry , microbiology and biotechnology , protein kinase a , signal transduction , protein kinase c , neurotrophic factors , biology , in vitro , kinase , endocrinology , gene , biochemistry , receptor , central nervous system , paleontology , dentate gyrus
A bstract :In vitro studies have shown that PACAP promotes cell survival and neurite outgrowth in immature cerebellar granule cells. In the present study, we have examined the transduction pathways involved in the neurotrophic activity of PACAP. Incubation of cultured granule cells with graded concentrations of PACAP produced a dose‐dependent increase in c‐fos mRNA level. The effects of PACAP on c‐fos gene expression and granule cell survival were both mimicked by dbcAMP but not by PMA. The maximum effect of PACAP on c‐fos gene expression was observed after 1 h of treatment. Similar effects of the peptide on granule cell survival were observed whether the cells were continuously incubated with PACAP for 48 h or only exposed to PACAP during 1 h. The PKA inhibitor H89 significantly reduced the effect of PACAP on c‐fos mRNA level, whereas the specific PKC inhibitor chelerytrine had no effect. These data indicate that the action of PACAP on cerebellar granule cell survival and c‐fos gene expression are both mediated through the adenylyl cyclase/PKA pathway.

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