首页> 外文期刊>International journal of molecular medicine >Prediction of crucial epigenetically?associated, differentially expressed genes by integrated bioinformatics analysis and the?identification of S100A9 as a novel biomarker in psoriasis
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Prediction of crucial epigenetically?associated, differentially expressed genes by integrated bioinformatics analysis and the?identification of S100A9 as a novel biomarker in psoriasis

机译:通过整合的生物信息学分析预测至关重要的表征?相关的,差异表达基因的αs100a9作为牛皮癣的新型生物标志物的鉴定

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Psoriasis is one of the most common immune?mediated inflammatory diseases of the skin. The identification of the pivotal molecular mechanisms responsible for the disease pathogenesis may lead to the development of novel therapeutic options. The present study aimed to identify pivotal differentially expressed genes (DEGs) and methylated DEGs in psoriasis. The raw data from gene microarrays were obtained from the Gene Expression Omnibus database. The data were processed using packages in Bioconductor. In total, 352 upregulated and 137?downregulated DEGs were identified. The upregulated DEGs were primarily enriched in the ‘innate immune defense’ response and the ‘cell cycle’. The downregulated DEGs were primarily enriched in ‘cell adhesion’ and ‘tight junction pathways’. A total of 95 methylated DEGs were identified, which were significantly enriched in the ‘interleukin?(IL)?17 signaling pathway’ and the ‘response to interferon’. Based on a comprehensive evaluation of all algorithms in cytoHubba, the key epigenetic?associated hub genes (S100A9, SELL, FCGR3B, MMP9, S100A7, IL7R, IRF7, CCR7, IFI44, CXCL1 and LCN2) were screened out. In order to further validate these genes, the present study constructed a model of imiquimod (IMQ)?induced psoriasiform dermatitis using mice. The levels of these hub genes were increased in the IMQ group. The knockdown of methylation?regulating enzyme ten?eleven translocation?(TET)?2 expression in mice attenuated the expression levels of S100A9, SELL, IL7R, MMP9, CXCL1 and LCN2. Furthermore, the hydroxymethylated level of S100A9 was highly expressed in the IMQ group and was significantly decreased by TET2 deficiency in mice. On the whole, using an integrative system bioinformatics approach, the present study identified a series of characteristic enrichment pathways and key genes that may serve as potential biomarkers in psoriasis.
机译:牛皮癣是最常见的免疫?介导皮肤的炎症疾病。鉴定负责疾病发病机制的枢轴分子机制可能导致新的治疗选择的发展。本研究旨在将枢轴差异表达基因(DEGS)鉴定在牛皮癣中。来自基因微阵列的原始数据从基因表达综合体数据库获得。使用Biocumond中的包装处理数据。总共,352个上调和137?被确定下调的Degs。上调的次数主要富集为“先天免疫防御”反应和“细胞周期”。下调的次数主要富含“细胞粘附”和“紧密结途径”。鉴定了总共95个甲基化的含量,其在“白细胞介素?(IL)?17信号传导途径”和“对干扰素的反应”中显着富集。基于对Cyhubba中所有算法的综合评估,筛选出关键的表观遗传学?相关的集线基因(S100A9,卖,FCGR3B,MMP9,S100A7,IL7R,IRF7,CCR7,IFI44,CXCL1和LCN2)。为了进一步验证这些基因,本研究构建了咪唑(IMQ)的模型?使用小鼠诱导牛皮癣皮炎。在IMQ组中增加了这些轮毂基因的水平。甲基化的敲低?调节酶十?十一易转位?(Tet)?2鼠鼠中的表达衰减S100A9,销售,IL7R,MMP9,CXCL1和LCN2的表达水平。此外,在IMQ组中高度表达S100A9的羟甲基甲基化水平,小鼠TET2缺乏显着降低。总的来说,使用一体化系统生物信息学方法,本研究确定了一系列特征性富集途径和可作为牛皮癣潜在生物标志物的关键基因。

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