首页> 外文期刊>Arthritis and Rheumatism >Methylation alterations of WT1 and homeobox genes in inflamed muscle biopsy samples from patients with untreated juvenile dermatomyositis suggest self-renewal capacity.
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Methylation alterations of WT1 and homeobox genes in inflamed muscle biopsy samples from patients with untreated juvenile dermatomyositis suggest self-renewal capacity.

机译:未治疗的青少年皮肌炎患者发炎的肌肉活检样本中WT1和同源异型框基因的甲基化改变提示自我更新的能力。

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To determine the effect of methylation alteration in inflamed muscles from children with juvenile dermatomyositis (DM) and other idiopathic inflammatory myopathies (IIMs).Magnetic resonance imaging-directed diagnostic muscle biopsies yielded samples from 20 children with juvenile DM, which were used for genome-wide DNA methylation profiling, as were muscle biopsy samples from 4 healthy controls. Bisulfite treatment followed by pyrosequencing confirmed methylation status in juvenile DM and other IIMs. Immunohistochemistry defined localization and expression levels of WT1.Comparison of genome-wide DNA methylation profiling between juvenile DM muscle and normal control muscle revealed 27 genes with a significant methylation difference between the groups. These genes were enriched with transcription factors and/or cell cycle regulators and were unrelated to duration of untreated disease. Six homeobox genes were among them; ALX4, HOXC11, HOXD3, and HOXD4 were hypomethylated, while EMX2 and HOXB1 were hypermethylated. WT1 was significantly hypomethylated in juvenile DM (Δβ = -0.41, P < 0.001). Bisulfite pyrosequencing verification in samples from 56 patients with juvenile DM confirmed the methylation alterations of these genes. Similar methylation alterations were observed in juvenile polymyositis (n = 5) and other IIMs (n = 9). Concordant with the other findings, WT1 protein was increased in juvenile DM muscle, with average positive staining of 11.6%, but was undetectable in normal muscle (P < 0.001).These results suggest that affected muscles of children with juvenile DM and IIMs have the capacity to be repaired, and that homeobox and WT1 genes are epigenetically marked to facilitate this repair process, potentially suggesting new avenues of therapeutic intervention.
机译:为了确定甲基化改变对青少年皮肌炎(DM)和其他特发性炎症性肌病(IIM)儿童发炎的肌肉的影响,以磁共振成像为导向的诊断性肌肉活检样本从20例青少年DM儿童中提取,用于基因组分析。广泛的DNA甲基化分析,以及来自4个健康对照的肌肉活检样品。在青少年DM和其他IIM中,亚硫酸氢盐处理后进行焦磷酸测序可确认甲基化状态。免疫组织化学确定了WT1的定位和表达水平。幼年DM肌肉和正常对照肌肉之间的全基因组DNA甲基化谱比较表明,两组之间存在27个甲基化差异显着的基因。这些基因富含转录因子和/或细胞周期调节剂,与未经治疗的疾病持续时间无关。其中有六个同源异型盒基因。 ALX4,HOXC11,HOXD3和HOXD4被低甲基化,而EMX2和HOXB1被高甲基化。少年DM中WT1的甲基化程度显着降低(Δβ= -0.41,P <0.001)。在来自56位青少年DM患者的样本中进行的亚硫酸氢盐焦磷酸测序验证证实了这些基因的甲基化改变。在青少年多发性肌炎(n = 5)和其他IIM(n = 9)中观察到类似的甲基化改变。与其他发现一致,少年DM肌肉中WT1蛋白增加,平均阳性染色为11.6%,但正常肌肉中未检测到(P <0.001),这些结果表明,患有DM和IIM的儿童患病的肌肉具有修复能力,以及同源异型盒和WT1基因在表观遗传学上被标记为促进该修复过程,这可能暗示了治疗干预的新途径。

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