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Activation of the innate immune response and interferon signalling in myotonic dystrophy type 1 and type 2 cataracts

机译:1型和2型强直性肌营养不良症中先天免疫应答和干扰素信号的激活

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摘要

Myotonic dystrophy (DM) is caused by a triplet repeat expansion in the non-coding region of either the DMPK (DM1) or CNBP (DM2) gene. Transcription of the expanded region causes accumulation of double-stranded RNA (dsRNA) in DM cells. We sought to determine how expression of triplet repeat RNA causes the varied phenotype typical of DM. Global transcription was measured in DM and non-DM cataract samples using Illumina Bead Arrays. DM samples were compared with non-DM samples and lists of differentially expressed genes (P≤ 0.05) were prepared. Gene set enrichment analysis and the Interferome database were used to search for significant patterns of gene expression in DM cells. Expression of individual genes was measured using quantitative real-time polymerase chain reaction. DMPK and CNBP expression was confirmed in native lens cells showing that a toxic RNA gain of function mechanism could exist in lens. A high proportion, 83% in DM1 and 75% in DM2, of the significantly disregulated genes were shared by both forms of the disease, suggesting a common mechanism. The upregulated genes in DM1 and DM2 were highly enriched in both interferon-regulated genes (IRGs) and genes associated with the response to dsRNA and the innate immune response. The characteristic fingerprint of IRGs and the signalling pathways identified in lens cells support a role for dsRNA activation of the innate immune response in the pathology of DM. This new evidence forms the basis for a novel hypothesis to explain the complex mechanism of DM.
机译:强直性肌营养不良症(DM)是由DMPK(DM1)或CNBP(DM2)基因的非编码区中的三联体重复扩增引起的。扩展区的转录导致DM细胞中双链RNA(dsRNA)的积累。我们试图确定三联体重复RNA的表达如何导致DM典型的变化表型。使用Illumina Bead Arrays在DM和非DM白内障样本中测量整体转录。将DM样品与非DM样品进行比较,并制备差异表达基因(P≤0.05)的列表。基因集富集分析和干扰素数据库用于搜索DM细胞中基因表达的显着模式。使用定量实时聚合酶链反应测量单个基因的表达。在天然晶状体细胞中证实了DMPK和CNBP表达,表明在晶状体中可能存在功能机制的毒性RNA获得。两种形式的疾病共享显着失调的基因的比例很高,在DM1中为83%,在DM2中为75%。 DM1和DM2中的上调基因在干扰素调节基因(IRG)和与dsRNA应答及先天免疫应答相关的基因中都高度富集。 IRGs的特征指纹和在晶状体细胞中鉴定的信号通路支持DM病理中先天免疫反应的dsRNA激活。这一新证据为解释DM复杂机制的新假设奠定了基础。

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