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Ribosomal Protein S6 Hypofunction in Postmortem Human Brain Links mTORC1-Dependent Signaling and Schizophrenia
Inés Ibarra-Lecue1, Rebeca Diez-Alarcia1,2, Benito Morentin2,3
1Department of Pharmacology, University of the Basque Country UPV/EHU and Centro de Investigación Biomédica en Red de Salud Mental CIBERSAM, Leioa, Spain.
Abstract:
The mechanistic target of rapamycin (also known as mammalian target of rapamycin) (mTOR)-dependent signaling pathway plays an important role in protein synthesis, cell growth, and proliferation, and has been linked to the development of the central nervous system. Recent studies suggest that mTOR signaling pathway dysfunction could be involved in the etiopathogenesis of schizophrenia. The main goal of this study was to evaluate the status of mTOR signaling pathway in postmortem prefrontal cortex (PFC) samples of subjects with schizophrenia. For this purpose, we quantified the protein expression and phosphorylation status of the mTOR downstream effector ribosomal protein S6 as well as other pathway interactors such as Akt and GSK3β. Furthermore, we quantified the status of these proteins in the brain cortex of rats chronically treated with the antipsychotics haloperidol, clozapine, or risperidone. We found a striking decrease in the expression of total S6 and in its active phosphorylated form phospho-S6 (Ser235/236) in the brain of subjects with schizophrenia compared to matched controls. The chronic treatment with the antipsychotics haloperidol and clozapine affected both the expression of GSK3β and the activation of Akt [phospho-Akt (Ser473)] in rat brain cortex, while no changes were observed in S6 and phospho-S6 (Ser235/236) protein expression with any antipsychotic treatment. These findings provide further evidence for the involvement of the mTOR-dependent signaling pathway in schizophrenia and suggest that a hypofunctional S6 may have a role in the etiopathogenesis of this disorder.
Insights
The mechanistic target of rapamycin (mTOR) pathway is crucial for brain development. This study found reduced mTOR signaling in schizophrenia patients, suggesting a hypofunctional S6 protein may contribute to the disorder.
Area of Science:
- Neuroscience
- Molecular Biology
- Psychiatry
Background:
- The mechanistic target of rapamycin (mTOR) pathway regulates protein synthesis, cell growth, and CNS development.
- Dysfunction in the mTOR pathway is increasingly implicated in the etiopathogenesis of schizophrenia.
Purpose of the Study:
- To investigate the status of the mTOR signaling pathway in the prefrontal cortex of individuals with schizophrenia.
- To examine the effects of antipsychotic treatment on mTOR pathway components in a rat model.
Main Methods:
- Quantification of protein expression and phosphorylation of mTOR effectors (S6, Akt, GSK3β) in postmortem human prefrontal cortex.
- Analysis of these proteins in rat brain cortex following chronic treatment with haloperidol, clozapine, or risperidone.
Main Results:
- Significantly decreased expression of total S6 and phosphorylated S6 (Ser235/236) was observed in schizophrenia patients compared to controls.
- Antipsychotic treatment in rats altered GSK3β expression and Akt activation but did not affect S6 or phospho-S6 levels.
Conclusions:
- These findings support the involvement of the mTOR pathway in schizophrenia.
- A hypofunctional S6 protein may play a role in the development of schizophrenia.
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