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A systems biology approach to identify intelligence quotient score-related genomic regions, and pathways relevant to potential therapeutic treatments

机译:一种系统生物学方法,用于识别与智商得分相关的基因组区域以及与潜在治疗相关的途径

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Although the intelligence quotient (IQ) is the most popular intelligence test in the world, little is known about the underlying biological mechanisms that lead to the differences in human. To improve our understanding of cognitive processes and identify potential biomarkers, we conducted a comprehensive investigation of 158 IQ-related genes selected from the literature. A genomic distribution analysis demonstrated that IQ-related genes were enriched in seven regions of chromosome 7 and the X chromosome. In addition, these genes were enriched in target lists of seven transcription factors and sixteen microRNAs. Using a network-based approach, we further reconstructed an IQ-related pathway from known human pathway interaction data. Based on this reconstructed pathway, we incorporated enriched drugs and described the importance of dopamine and norepinephrine systems in IQ-related biological process. These findings not only reveal several testable genes and processes related to IQ scores, but also have potential therapeutic implications for IQ-related mental disorders.
机译:尽管智力商(IQ)是世界上最受欢迎的智力测验,但对导致人类差异的潜在生物学机制知之甚少。为了增进我们对认知过程的理解并确定潜在的生物标志物,我们对选自文献的158种与IQ相关的基因进行了全面调查。基因组分布分析表明,智商相关基因在7号染色体和X染色体的七个区域富集。此外,这些基因丰富了七个转录因子和十六个microRNA的靶序列。使用基于网络的方法,我们从已知的人与人之间的相互作用数据中进一步重构了与智商相关的途径。基于这种重构途径,我们纳入了丰富的药物,并描述了多巴胺和去甲肾上腺素系统在智商相关的生物过程中的重要性。这些发现不仅揭示了与智商得分相关的几个可测基因和过程,而且对与智商相关的精神障碍具有潜在的治疗意义。

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