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Chronic fluoxetine administration inhibits extracellular signal-regulated kinase 1/2 phosphorylation in rat brain
F Fumagalli1, R Molteni, F Calabrese
1Center of Neuropharmacology, Department of Pharmacological Sciences, University of Milan, Milan, Italy.
Abstract:
Accumulating evidence indicates that antidepressants alter intracellular signalling mechanisms resulting in long-term synaptic alterations which probably account for the delay in clinical action of these drugs. Therefore, we investigated the effects of chronic fluoxetine administration on extracellular signal-regulated kinase (ERK) 1 and 2, a group of MAPKs that mediate signal transduction from the cell surface downstream to the nucleus. Our data demonstrate that 3-week fluoxetine treatment resulted in long-lasting reduction of phospho-ERK 1 and 2. Such an effect depends on the length of the treatment given that no changes were observed after a single drug injection or after 2 weeks of treatment and it is region specific, being observed in hippocampus and frontal cortex but not in striatum. Finally, phospho-ERK 1 and 2 were differently modulated within nucleus and cytosol in hippocampus but similarly reduced in the same compartments of the frontal cortex, highlighting the specific subcellular compartmentalization of fluoxetine. Conversely, imipramine did not reduce the hippocampal phosphorylation of both ERK subtypes whereas it selectively increased ERK 1 phosphorylation in the cytosolic compartment of frontal cortex suggesting a drug-specific effect on this intracellular target. These results point to modulation of phosphorylation, rather than altered expression, as the main target in the action of fluoxetine on this pathway. The reduction of ERK 1/2 function herein reported may be associated with the therapeutic effects of fluoxetine in the treatment of depression.
Insights
Chronic fluoxetine treatment for three weeks reduces phospho-extracellular signal-regulated kinase (ERK) 1 and 2 in specific brain regions. This reduction in ERK 1/2 signaling may contribute to the therapeutic effects of antidepressants in depression.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- Antidepressants modulate intracellular signaling pathways.
- Synaptic alterations are linked to delayed clinical effects of antidepressants.
- Extracellular signal-regulated kinase (ERK) 1 and 2 are key signaling molecules.
Purpose of the Study:
- To investigate the effects of chronic fluoxetine on ERK 1 and 2 phosphorylation.
- To determine the time- and region-specific effects of fluoxetine on ERK signaling.
- To compare fluoxetine's effects with imipramine on ERK phosphorylation.
Main Methods:
- Chronic administration of fluoxetine and imipramine.
- Measurement of phospho-ERK 1 and 2 levels in hippocampus, frontal cortex, and striatum.
- Analysis of subcellular compartmentalization (nucleus and cytosol).
Main Results:
- Three weeks of fluoxetine reduced phospho-ERK 1 and 2 in hippocampus and frontal cortex, but not striatum.
- No changes in phospho-ERK 1 and 2 were observed after single or two-week fluoxetine treatment.
- Fluoxetine showed region-specific and compartment-specific effects on ERK phosphorylation.
- Imipramine exhibited different effects, increasing ERK 1 phosphorylation in the frontal cortex cytosol.
Conclusions:
- Antidepressant action on ERK 1/2 involves modulation of phosphorylation, not expression.
- Reduced ERK 1/2 function by fluoxetine may underlie its therapeutic effects in depression.
- Drug-specific effects on intracellular signaling pathways are evident.
