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Connecting myelin-related and synaptic dysfunction in schizophrenia with SNP-rich gene expression hubs

机译:将精神分裂症的髓鞘相关和突触功能障碍与富含SNP的基因表达中心联系起来

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摘要

Combining genome-wide mapping of SNP-rich regions in schizophrenics and gene expression data in all brain compartments across the human life span revealed that genes with promoters most frequently mutated in schizophrenia are expression hubs interacting with far more genes than the rest of the genome. We summed up the differentially methylated “expression neighbors” of genes that fall into one of 108 distinct schizophrenia-associated loci with high number of SNPs. Surprisingly, the number of expression neighbors of the genes in these loci were >35 times higher for the positively correlating genes (>32 times higher for the negatively correlating ones) than for the rest of the ~16000 genes. While the genes in the 108 loci have little known impact in schizophrenia, we identified many more known schizophrenia-related important genes with a high degree of connectedness (e.g. MOBP, SYNGR1 and DGCR6), validating our approach. Both the most connected positive and negative hubs affected synapse-related genes the most, supporting the synaptic origin of schizophrenia. At least half of the top genes in both the correlating and anti-correlating categories are cancer-related, including oncogenes (RRAS and ALDOA), providing further insight into the observed inverse relationship between the two diseases.
机译:结合精神分裂症中SNP丰富区域的全基因组分布图和人类整个生命周期所有脑室中的基因表达数据,发现具有在精神分裂症中最频繁突变的启动子的基因是表达枢纽,与其他基因组相比相互作用的基因要多得多。我们总结了基因的差异甲基化“表达邻居”,这些基因落入108个具有高SNP的不同精神分裂症相关基因座之一。出乎意料的是,这些基因座中基因的表达邻居数量比其余基因高> 35倍(负相关基因高> 32倍) 〜16000个基因尽管108个基因座中的基因对精神分裂症影响鲜为人知,但我们鉴定出许多已知的高度关联的精神分裂症相关重要基因(例如MOBP,SYNGR1和DGCR6),验证了我们的方法。连接最紧密的正向和负向集线器对突触相关基因的影响最大,支持精神分裂症的突触起源。在相关和反相关类别中,至少有一半的顶级基因与癌症相关,包括癌基因(RRAS和ALDOA),从而为观察到的两种疾病之间的逆向关系提供了进一步的见识。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Hedi Hegyi;

  • 作者单位
  • 年(卷),期 -1(7),-1
  • 年度 -1
  • 页码 45494
  • 总页数 14
  • 原文格式 PDF
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