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Evaluation of mRNA expression level of the ATP synthase membrane subunit c locus 1 (ATP5G1) gene in patients with schizophrenia
Authors:Amany A. Saleh  Nesreen G. Elhelbawy  Rania M. Azmy  Mohammed S. Abdelshafy  Sally S. Donia  Eman M. Abd El Gayed
Affiliation:1. Medical Biochemistry and Molecular Biology, Menoufia University, Shebin Elkom City, Egypt;2. Neuropsychiatry and Menoufia University, Shebin Elkom City, Egypt;3. Medical Physiology Departments, Faculty of Medicine, Menoufia University, Shebin Elkom City, Egypt
Abstract:BackgroundSchizophrenia is a serious, complex mental disorder. The impairment of oxidative phosphorylation has a detrimental consequence on CNS function. Different ATP synthase subunits have been involved in the pathological process of various neurodegenerative disorders. Our goal was to evaluate the mRNA expression level of the ATP synthase membrane subunit c locus 1 (ATP5G1, also named ATP5MC1) gene in patients with schizophrenia.MethodsDetermination of the expression levels of ATP5G1 in plasma and peripheral blood mononuclear cells (PBMCs) were performed by real-time PCR in 90 controls and 90 patients with schizophrenia.ResultsPatients had significantly decreased ATP5G1 mRNA expression levels in both plasma and PBMCs compared to controls. The receiver operating characteristic curve was applied to detect a cut-off value of ATP5G1 expression in plasma and PBMCs. The ATP5G1 relative expression in PBMCs had better performance with a cut-off value ≤ 21 (AUC = 0.892, P < 0.001), sensitivity of 94.44%, and specificity of 72.22% in discriminating between schizophrenic patients. ATP5G1 expression in PBMCs was an independent predictor in schizophrenia.ConclusionThis study revealed a down-regulation of ATP5G1 expression in schizophrenia, precisely expression in PBMCs. That might give insight into the role of ATP5G1 gene in the pathogenesis of schizophrenia.
Keywords:Schizophrenia  c subunit  ATP5G1  Real-time PCR
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