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Updated: Jun 24, 2026

Spatial and Temporal Analysis of Active ERK in the C. elegans Germline
Published on: November 29, 2016
Clozapine-induced ERK1 and ERK2 signaling in prefrontal cortex is mediated by the EGF receptor
Avril Pereira1, George Fink, Suresh Sundram
1Department of Molecular Psychopharmacology, Mental Health Research Institute of Victoria, 155 Oak Street, Parkville, 3052, Victoria, Australia, a.pereira@mhri.edu.au.
Abstract:
The atypical antipsychotic drug clozapine is effective in treatment-refractory schizophrenia. The intracellular signaling pathways that mediate clozapine action remain unknown. A potential candidate is the mitogen-activated protein kinase extracellular signal-regulated kinase (MAPK-ERK) cascade that links G-protein-coupled receptor and ErbB growth factor signaling systems, thereby regulating synaptic plasticity and connectivity, processes impaired in schizophrenia. Here, we examined how clozapine differentially modulated phosphorylation of the MAPK isoforms, ERK1/ERK2 in primary murine prefrontal cortical neurons compared to the typical antipsychotic drug haloperidol. While clozapine and haloperidol acutely decreased cortical pERK1 activation, only clozapine but not haloperidol stimulated pERK1 and pERK2 with continued drug exposure. This delayed ERK increase however, did not occur via the canonical dopamine D(2)-Gi/o-PKA or serotonin 5HT(2A)-Gq-phospholipase-C-linked signaling pathways. Rather, epidermal growth factor (EGF) receptor signaling mediated clozapine-induced ERK activation, given dose-dependent reduction of pERK1 and pERK2 stimulation with the EGF receptor inhibitor, AG1478. Immunocytochemical studies indicated that clozapine treatment increased EGF receptor (Tyr1068) phosphorylation. In vivo mouse treatment studies supported the in vitro findings with initial blockade, subsequent activation, and normalization of the cortical ERK response over 24 h. Furthermore, in vivo clozapine-induced ERK activation was significantly reduced by AG1478. This is the first report that clozapine action on prefrontal cortical neurons involves the EGF signaling system. Since EGF receptor signaling has not been previously linked to antipsychotic drug action, our findings may implicate the EGF system as a molecular substrate in treatment-resistant schizophrenia.
Insights
Clozapine, an atypical antipsychotic, activates the epidermal growth factor (EGF) receptor pathway in neurons, unlike haloperidol. This novel finding suggests the EGF system may be crucial for treating refractory schizophrenia.
Area of Science:
- Neuroscience
- Pharmacology
- Molecular Biology
Background:
- Schizophrenia is a debilitating mental disorder often treated with antipsychotics.
- The exact molecular mechanisms of atypical antipsychotics like clozapine are not fully understood.
- The mitogen-activated protein kinase extracellular signal-regulated kinase (MAPK-ERK) pathway is implicated in synaptic plasticity, which is impaired in schizophrenia.
Purpose of the Study:
- To investigate the intracellular signaling pathways mediating clozapine's effects in schizophrenia.
- To compare the effects of clozapine and haloperidol on the MAPK-ERK cascade in neurons.
- To determine if epidermal growth factor (EGF) receptor signaling is involved in clozapine's action.
Main Methods:
- Primary murine prefrontal cortical neurons were treated with clozapine or haloperidol.
- Phosphorylation of ERK1/ERK2 was measured using Western blotting and immunocytochemistry.
- The effect of an EGF receptor inhibitor (AG1478) on clozapine-induced ERK activation was assessed.
- In vivo mouse models were used to validate in vitro findings.
Main Results:
- Both clozapine and haloperidol initially decreased ERK1/ERK2 phosphorylation.
- Continued clozapine exposure, but not haloperidol, led to increased ERK1/ERK2 phosphorylation.
- Clozapine-induced ERK activation was mediated by the EGF receptor pathway, as shown by inhibition with AG1478.
- Clozapine treatment increased EGF receptor phosphorylation at Tyr1068.
Conclusions:
- Clozapine's action on prefrontal cortical neurons involves the EGF receptor signaling pathway.
- This is the first study to link EGF receptor signaling to antipsychotic drug action.
- The EGF system may represent a novel molecular target for treatment-resistant schizophrenia.
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