RRC ID 57986
著者 Kobayashi Y, Iwakura Y, Sotoyama H, Kitayama E, Takei N, Someya T, Nawa H.
タイトル Clozapine-dependent inhibition of EGF/neuregulin receptor (ErbB) kinases.
ジャーナル Transl Psychiatry
Abstract Clozapine is an antipsychotic agent prescribed to psychotic patients exhibiting tolerance and/or resistance to the conventional antipsychotic medications that mainly drive monoamine antagonism. As the pharmacological fundamentals of its unique antipsychotic profile have been unrevealed, here, we attempted to obtain hints at this question. Here, we found that clozapine directly acts on ErbB kinases to downregulate epidermal growth factor (EGF)/neuregulin signaling. In cultured cell lines and cortical neurons, EGF-triggered ErbB1 phosphorylation was diminished by 30 μM clozapine, but not haloperidol, risperidone, or olanzapine. The neuregulin-1-triggered ErbB4 phosphorylation was attenuated by 10 μM clozapine and 30 μM haloperidol. We assumed that clozapine may directly interact with the ErbB tyrosine kinases and affect their enzyme activity. To test this assumption, we performed in vitro kinase assays using recombinant truncated ErbB kinases. Clozapine (3-30 μM) significantly decreased the enzyme activity of the truncated ErbB1, B2, and B4 kinases. Acute in vivo administration of clozapine (20 mg/kg) to adult rats significantly suppressed the basal phosphorylation levels of ErbB4 in the brain, although we failed to detect effects on basal ErbB1 phosphorylation. Altogether with the previous findings that quinazoline inhibitors for ErbB kinases harbor antipsychotic potential in animal models for schizophrenia, our present observations suggest the possibility that the micromolar concentrations of clozapine can attenuate the activity of ErbB receptor kinases, which might illustrate a part of its unique antipsychotic psychopharmacology.
巻・号 9(1)
ページ 181
公開日 2019-8-1
DOI 10.1038/s41398-019-0519-1
PII 10.1038/s41398-019-0519-1
PMID 31371697
PMC PMC6675791
MeSH Animals Antipsychotic Agents / pharmacology* Astrocytes / drug effects Astrocytes / metabolism Brain / drug effects* Brain / metabolism Cell Line, Tumor Cell Survival / drug effects Clozapine / pharmacology* Down-Regulation / drug effects Epidermal Growth Factor / metabolism* Humans Male Neuregulins / metabolism* Oncogene Proteins v-erbB / metabolism* Phosphorylation / drug effects Rats Rats, Sprague-Dawley Signal Transduction / drug effects
IF 5.28
引用数 0
リソース情報
ヒト・動物細胞 A431(RCB0202)