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Functional Genomic Analyses Identify Pathways Dysregulated in Animal Model of Autism

机译:功能基因组分析识别自闭症动物模型中失调的途径

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Summary BackgroundAutism spectrum disorders (ASDs) are a heterogeneous group of neurodevelopmental disorders that display complicated behavioral symptoms. MethodsUsing gene expressing profiling and the weighted gene co-expression network analysis (WGCNA), we studied genes coregulated by similar factors such as genetic variants or environmental effects in the hippocampus in an animal model of autism. ResultsFrom microarray data, we identified 21,388 robustly expressed genes of which 721 genes were found to be differently expressed in the valproic acid-treated group compared to the control group. WGCNA identified multiple co-expression modules known to associate with cognitive function, inflammation, synaptic, and positive regulation of protein kinase activating. Many of these modules, however, have not been previously linked to autism spectrum disorders which included G-protein signaling, immunity, and neuroactive ligand–receptor interaction pathway. The downregulation of the highly connected (hub) genes Taar7h and Taar7b in neuroactive ligand–receptor interaction pathway was validated by qRT-PCR. Immunoblotting and immunohistochemistry further showed that TAAR7 expression was downregulated not only in valproic acid-treated animals, but also BTBR T+tf/J mice. ConclusionsThis study highlights the advantages of gene microarrays to uncover co-expression modules associated with autism and suggests that Taars and related gene regulation networks may play a significant role in autism.
机译:发明背景自闭症谱系障碍(ASD)是一组显示复杂行为症状的神经发育障碍的异质性组。方法使用基因表达谱分析和加权基因共表达网络分析(WGCNA),我们在自闭症动物模型中研究了由类似因素(例如遗传变异或环境效应)在海马体中调控的基因。结果从微阵列数据中,我们鉴定出21,388个稳定表达的基因,其中721个基因在丙戊酸治疗组中与对照组相比有不同的表达。 WGCNA确定了多种共表达模块,这些模块与认知功能,炎症,突触和蛋白激酶激活的正调控有关。但是,这些模块中的许多模块以前并未与自闭症谱系障碍相关,其中包括G蛋白信号传导,免疫和神经活性配体-受体相互作用途径。通过qRT-PCR验证了神经活性配体-受体相互作用途径中高度连接(hub)基因Taar7h和Taar7b的下调。免疫印迹和免疫组织化学进一步表明,不仅在丙戊酸治疗的动物中,而且在BTBR T + tf / J小鼠中,TAAR7的表达均被下调。结论这项研究突出了基因芯片在揭示与自闭症相关的共表达模块方面的优势,并暗示Taars和相关的基因调控网络可能在自闭症中起重要作用。

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