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首页> 外文期刊>Immunobiology: Zeitschrift fur Immunitatsforschung >Expression profile of peripheral tissue antigen genes in medullary thymic epithelial cells (mTECs) is dependent on mRNA levels of autoimmune regulator (Aire)
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Expression profile of peripheral tissue antigen genes in medullary thymic epithelial cells (mTECs) is dependent on mRNA levels of autoimmune regulator (Aire)

机译:髓样胸腺上皮细胞(mTECs)中外周组织抗原基因的表达谱取决于自身免疫调节剂(Aire)的mRNA水平

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In the thymus of non-obese diabetic (NOD) mice, the expression of the autoimmune regulator (Aire) gene varies with age, and its down-regulation in young mice precedes the later emergence of type 1 diabetes mellitus (T1D). In addition, the insulin (Ins2) peripheral tissue antigen (PTA) gene, which is Aire-dependent, is also deregulated in these mice. Based in these findings, we hypothesized that the imbalance in PTA gene expression in the thymus can be associated with slight variations in Aire transcript levels. To test this, we used siRNA to knockdown Aire by in vivo electro-transfection of the thymus of BALB/c mice. The efficiency of the electro-transfection was monitored by assessing the presence of irrelevant Cy3-labeled siRNA in the thymic stroma. Importantly, Aire-siRNA reached medullary thymic epithelial cells (mTECs) down-regulating Aire. As expected, the in vivo Aire knockdown was partial and transient; the maximum 59% inhibition occurred in 48. h. The Aire knockdown was sufficient to down-regulate PTA genes; however, surprisingly, several others, including Ins2, were up-regulated. The modulation of these genes after in vivo Aire knockdown was comparable to that observed in NOD mice before the emergence of T1D. The in vitro transfections of 3.10 mTEC cells with Aire siRNA resulted in samples featuring partial (69%) and complete (100%) Aire knockdown. In these Aire siRNA-transfected 3.10 mTECs, the expression of PTA genes, including Ins2, was down-regulated. This suggests that the expression profile of PTA genes in mTECs is affected by fine changes in the transcription level of Aire.
机译:在非肥胖型糖尿病(NOD)小鼠的胸腺中,自身免疫调节因子(Aire)基因的表达随年龄而变化,并且在年轻小鼠中其下调在1型糖尿病(T1D)的出现之后出现。此外,在这些小鼠中,依赖于Aire的胰岛素(Ins2)周围组织抗原(PTA)基因也被解除调节。基于这些发现,我们假设胸腺中PTA基因表达的失衡可能与Aire转录水平的轻微变化有关。为了测试这一点,我们使用siRNA通过BALB / c小鼠胸腺的体内电转染来敲除Aire。通过评估胸腺基质中不相关的Cy3标记的siRNA的存在来监测电转染的效率。重要的是,Aire-siRNA到达了下调Aire的髓样胸腺上皮细胞(mTECs)。不出所料,体内Aire的敲低是部分和短暂的。最大的59%抑制发生在48小时内。 Aire基因敲低足以下调PTA基因。但是,令人惊讶的是,包括Ins2在内的其他几个也被上调。在体内Aire敲低后,这些基因的调节与T1D出现之前在NOD小鼠中观察到的调节相当。 3.10 mTEC细胞与Aire siRNA的体外转染导致样品具有部分(69%)和完全(100%)Aire敲低的特征。在这些Aire siRNA转染的3.10 mTECs中,PTA基因(包括Ins2)的表达下调。这表明mTECs中PTA基因的表达谱受Aire转录水平细微变化的影响。

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