Scarr Elizabeth, Udawela Madhara, Dean Brian
Molecular Psychiatry Laboratory, Florey Institute for Neuroscience and Mental Health, Parkville, VIC 3052, Australia.
CRC for Mental Health, Carlton, VIC, 3053, Australia.
NPJ Schizophr. 2018 Feb 20;4(1):4. doi: 10.1038/s41537-018-0044-x.
Schizophrenia (Sz) probably occurs after genetically susceptible individuals encounter a deleterious environmental factor that triggers epigenetic mechanisms to change CNS gene expression. To determine if omnibus changes in CNS gene expression are present in Sz, we compared mRNA levels in the frontal pole (Brodmann's area (BA) 10), the dorsolateral prefrontal cortex (BA 9) and cingulate cortex (BA 33) from 15 subjects with Sz and 15 controls using the Affymetrix™ Human Exon 1.0 ST Array. Differences in mRNA levels (±≥20%; p < 0.01) were identified (JMP Genomics 5.1) and used to predict pathways and gene x gene interactions that would be affected by the changes in gene expression using Ingenuity Pathway Analysis. There was significant variation in mRNA levels with diagnoses for 566 genes in BA 10, 65 genes in BA 9 and 40 genes in BA 33. In Sz, there was an over-representation of genes with changed expression involved in inflammation and development in BA 10, cell morphology in BA 9 and amino acid metabolism and small molecule biochemistry in BA 33. Using 94 genes with altered levels of expression in BA 10 from subjects with Sz, it was possible to construct an interactome of proven direct gene x gene interactions that was enriched for genes in inflammatory, developmental, oestrogen, serotonergic, cholinergic and NRG1 regulated pathways. Our data shows complex, regionally specific changes in cortical gene expression in Sz that are predicted to affect homeostasis between biochemical pathways already proposed to be important in the pathophysiology of the disorder.
精神分裂症(Sz)可能发生在遗传易感性个体遇到有害环境因素之后,该因素触发表观遗传机制改变中枢神经系统(CNS)基因表达。为了确定Sz患者中枢神经系统基因表达是否存在总体变化,我们使用Affymetrix™ Human Exon 1.0 ST Array比较了15例Sz患者和15例对照者额叶极(布罗德曼区(BA)10)、背外侧前额叶皮质(BA 9)和扣带回皮质(BA 33)中的mRNA水平。通过JMP Genomics 5.1软件确定了mRNA水平的差异(±≥20%;p < 0.01),并用于预测受基因表达变化影响的信号通路以及基因与基因之间的相互作用,这一过程采用了Ingenuity Pathway Analysis软件。BA 10区566个基因、BA 9区65个基因和BA 33区40个基因的mRNA水平随诊断结果存在显著差异。在Sz患者中,BA 10区表达改变的基因在炎症和发育方面过度表达,BA 9区在细胞形态方面,BA 33区在氨基酸代谢和小分子生物化学方面。利用Sz患者BA 10区94个表达水平改变的基因,有可能构建一个已证实的直接基因与基因相互作用的相互作用组,该相互作用组在炎症、发育、雌激素、血清素能、胆碱能和NRG1调节的信号通路中的基因得到了富集。我们的数据显示,Sz患者皮质基因表达存在复杂的、区域特异性变化,预计这些变化会影响已被认为在该疾病病理生理学中很重要的生化信号通路之间的稳态。