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EDA targets revealed by skin gene expression profiles of wild-type, Tabby and Tabby EDA-A1 transgenic mice.

机译:通过野生型,Tabby和Tabby EDA-A1转基因小鼠的皮肤基因表达谱揭示的EDA目标。

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Mutations in the EDA gene cause anhidrotic ectodermal dysplasia (EDA), with lesions in skin appendage formation. To begin to analyze EDA pathways, we have used expression profiling on 15 000-gene mouse cDNA microarrays, comparing adult mouse skin from wild-type, EDA-defective (Tabby) mice, and Tabby mice supplemented with the EDA-A1 isoform, which is sufficient to rescue multiple Tabby phenotypes. Given the sensitivity of the current microarray system, 8500 genes (60%) were estimated to be expressed, including transcription factors and growth-regulatory genes that had not previously been identified in skin; but only 24 (0.16%), one-third of them novel, showed significant differences between wild type and Tabby. An additional eight genes not included in the 15 000 gene set were shown to have expression differences by real-time RT-PCR. Sixteen of 32 affected genes were restored significantly toward wild-type levels in EDA-A1 transgenic Tabby mice. Significant up-regulation in Tabby skin was observed for several dermal matrix genes, including Col1a1, Col1a2, Col3a1 and SPARC: In contrast, down-regulation occurred for the NEMO/NF-kB pathway, already implicated in skin appendage formation, and even more markedly for a second pathway, JNK/c-jun/c-fos and their target genes, that has not previously been clearly associated with skin development. These data are consistent with the regulation of the NF-kB pathway by EDA, and support its involvement in the regulation of the JNK pathway as well.
机译:EDA基因的突变会导致无汗外胚层发育不良(EDA),并在皮肤附肢形成中造成损害。为了开始分析EDA途径,我们使用了15 000基因小鼠cDNA微阵列上的表达谱,比较了野生型,EDA缺陷(Tabby)小鼠和补充了EDA-A1亚型的Tabby小鼠的成年小鼠皮肤。足以挽救多种Tabby表型。考虑到当前微阵列系统的敏感性,估计可以表达8500个基因(60%),包括以前在皮肤中未发现的转录因子和生长调节基因。但只有24(0.16%)(其中三分之一是小说)在野生型和Tabby之间显示出显着差异。实时RT-PCR显示15,000个基因集中未包含的另外8个基因具有表达差异。在32个受影响的基因中,有16个在EDA-A1转基因Tabby小鼠中显着恢复了野生型水平。在Tabby皮肤中观察到了几种真皮基质基因的显着上调,包括Col1a1,Col1a2,Col3a1和SPARC:相反,NEMO / NF-kB通路发生了下调,已经参与了皮肤附件的形成,甚至更多。对于第二种途径,即JNK / c-jun / c-fos及其靶基因,显然没有明显的皮肤发育作用。这些数据与EDA对NF-kB途径的调节一致,并且也支持其参与JNK途径的调节。

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