Regulation of c-fos, c-jun and c-myc gene expression by angiotensin II in primary cultured rat astrocytes: Role of ERK1/2 MAP kinases

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Abstract

We have previously shown that angiotensin II (Ang II) stimulates astrocyte growth through activation of ERK1/2 mitogen activated protein (MAP) kinases. In the current study, we determined whether Ang II stimulates the expression of c-fos, c-jun and c-myc in brainstem astrocyte cultures. Reverse transcriptase-PCR analysis showed c-fos, c-jun, and c-myc mRNAs were induced by Ang II. The EC50 values for Ang II stimulation of c-fos, c-jun and c-myc were 1.3, 1.68 and 1.4 nM, respectively. Ang II (100 nM) induced peak stimulation for all genes by 45 min followed by a gradual decline. Inhibition of ERK1/2 by PD98059 attenuated Ang II-induced c-fos and c-myc mRNA expression (by 75% and 100%, respectively) but was ineffective in preventing Ang II induction of c-jun. These studies show for the first time in brainstem astrocytes that Ang II induces the expression of c-fos, c-myc and c-jun, and showed that ERK1/2 mediate Ang II stimulation of c-fos and c-myc. These data implicate the ERK1/2 MAP kinase pathway as a divergent point in controlling Ang II stimulation of immediate early response genes in the central nervous system.
Original languageEnglish
Pages (from-to)545-550
Number of pages6
JournalNeurochemical Research
Volume33
Issue number3
DOIs
StatePublished - Aug 30 2007

Funding

This work was supported in part by National Heart, Lung and Blood Institutes Grant HL-077199 and a President’s Faculty Research & Development Grant from Nova Southeastern University.

FundersFunder number
National Heart, Lung and Blood InstitutesHL-077199
NSU President’s Faculty Research Development Grant

    ASJC Scopus Subject Areas

    • Biochemistry
    • Cellular and Molecular Neuroscience

    Keywords

    • Angiotensin II
    • Astrocytes
    • Brainstem
    • c-fos
    • c-jun
    • c-myc
    • Culture
    • ERK1/2 MAP kinases
    • Immediate early genes
    • Reverse transcriptase PCR

    Disciplines

    • Biochemistry
    • Molecular and Cellular Neuroscience

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