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Prefrontal cortex-specific Dcc deletion induces schizophrenia-related behavioral phenotypes and fail to be rescued by
Jing Sun1, Qijie Cong1, Tingkai Sun1
1Neurobiology & Mitochondrial Key Laboratory, Effective & Toxicity Monitoring Innovative Practice Center for Food Pharmaceutical Specialty, School of Pharmacy, Jiangsu University, Zhenjiang, 212013, PR China.
Abstract:
Multiple genome studies have discovered that variation in deleted in colorectal carcinoma (Dcc) at transcription and translation level were associated with the occurrences of psychiatric disorders. Yet, little is known about the function of Dcc in schizophrenia (SCZ)-related behavioral abnormalities and the efficacy of antipsychotic drugs in vivo. Here, we used an animal model of prefrontal cortex-specific knockdown (KD) of Dcc in adult C57BL/6 mice to study the attention deficits and impaired locomotor activity. Our results supported a critical role of Dcc deletion in SCZ-related behaviors. Notably, olanzapine rescued the SCZ-related behaviors in the MK801-treated mice but not in the cortex-specific Dcc KD mice, indicating that Dcc play a critical in the mechanism of antipsychotic effects of olanzapine. Knockdown of Dcc in prefrontal cortex results in glutamatergic dysfunction, including defects in glutamine synthetase and postsynaptic maturation. As one of the major risk factors of the degree of antipsychotic response, Dcc deletion-induced glutamatergic dysfunction may be involved in the underlying mechanism of treatment resistance of olanzapine. Our findings identified Dcc deletion-mediated SCZ-related behavioral defects, which serve as a valuable animal model for study of SCZ and amenable to targeted investigations in mechanistic hypotheses of the mechanism underlying glutamatergic dysfunction-induced antipsychotic treatment resistance.
Insights
Deleted in colorectal carcinoma (Dcc) gene variations link to psychiatric disorders. Dcc gene knockdown in mice impairs behaviors relevant to schizophrenia and affects antipsychotic drug efficacy, suggesting a role in treatment resistance.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Genome studies link Deleted in colorectal carcinoma (Dcc) gene variations to psychiatric disorders.
- The precise function of Dcc in schizophrenia (SCZ)-related behaviors and antipsychotic drug efficacy remains unclear.
Purpose of the Study:
- To investigate the role of Dcc in SCZ-related behavioral abnormalities using a mouse model.
- To explore the impact of Dcc knockdown on the efficacy of antipsychotic medications in vivo.
Main Methods:
- Generated a prefrontal cortex-specific Dcc knockdown (KD) mouse model in adult C57BL/6 mice.
- Assessed attention deficits and locomotor activity in Dcc KD mice.
- Evaluated the effects of olanzapine on SCZ-related behaviors in Dcc KD and MK801-treated mice.
Main Results:
- Dcc deletion critically contributes to SCZ-related behaviors in the mouse model.
- Olanzapine effectively rescued SCZ-related behaviors in MK801-treated mice but not in Dcc KD mice.
- Prefrontal cortex Dcc knockdown led to glutamatergic dysfunction, impacting glutamine synthetase and postsynaptic maturation.
Conclusions:
- Dcc plays a crucial role in the mechanism of olanzapine's antipsychotic effects.
- Dcc deletion-induced glutamatergic dysfunction may underlie treatment resistance to olanzapine in SCZ.
- The Dcc KD mouse model offers a valuable platform for studying SCZ mechanisms and antipsychotic treatment resistance.
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