Farrelly Lorna A, Dicker Patrick, Wynne Kieran, English Jane, Cagney Gerard, Föcking Melanie, Cotter David R
Department of Psychiatry, Royal College of Surgeons in Ireland, Education and Research Centre, Beaumont Hospital, Dublin, Ireland.
Proteomics. 2014 Jun;14(12):1574-8. doi: 10.1002/pmic.201300466. Epub 2014 May 16.
The prefrontal cortex (PFC) is associated with mental health illnesses including schizophrenia, depression, bipolar disorder, and autism spectrum disorders. It richly expresses neuroreceptors which are the target for antipsychotics. However, as the precise mechanism of action of antipsychotic medications is not known, proteomic studies of the effects of antipsychotic drugs on the brain are warranted. In the current study, we aimed to characterize protein expression in the adult rodent PFC (n = 5 per group) following low-dose treatment with Risperidone or saline in adolescence (postnatal days 34-47). The PFC was examined by triplicate 1 h runs of label-free LC-MS/MS. The raw mass spectral data were analyzed with the MaxQuant(TM) software. Statistical analysis was carried out using SAS® Version 9.1. Pathway and functional analysis was performed with IngenuityPathway Analysis and in the Database for Annotation, Visualization and Integrated Discovery (DAVID), respectively, the most implicated pathways were found to be related to mitochondrial function, protein trafficking, and the cytoskeleton. This report adds to the current repertoire of data available concerning the effects of antipsychotic drugs on the brain and sheds light on their biological mechanisms. The MS data have been deposited with the ProteomeXchange Consortium with dataset identifier PXD000480.
前额叶皮质(PFC)与包括精神分裂症、抑郁症、双相情感障碍和自闭症谱系障碍在内的精神疾病有关。它大量表达神经受体,而这些神经受体是抗精神病药物的作用靶点。然而,由于抗精神病药物的确切作用机制尚不清楚,因此有必要对其对大脑影响进行蛋白质组学研究。在本研究中,我们旨在描述成年啮齿动物在青春期(出生后第34 - 47天)接受低剂量利培酮或生理盐水治疗后前额叶皮质(每组n = 5)中的蛋白质表达情况。通过对前额叶皮质进行三次无标记LC-MS/MS 1小时运行来进行检测。原始质谱数据使用MaxQuant™软件进行分析。使用SAS® 9.1版进行统计分析。分别使用IngenuityPathway Analysis和数据库注释、可视化与综合发现(DAVID)进行通路和功能分析,发现最相关的通路与线粒体功能、蛋白质运输和细胞骨架有关。本报告增加了有关抗精神病药物对大脑影响的现有数据,并揭示了其生物学机制。质谱数据已存入蛋白质组交换联盟,数据集标识符为PXD000480。