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首页> 外文期刊>Genome Biology >Cytosine methylation changes in enhancer regions of core pro-fibrotic genes characterize kidney fibrosis development
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Cytosine methylation changes in enhancer regions of core pro-fibrotic genes characterize kidney fibrosis development

机译:核心促纤维化基因增强子区域的胞嘧啶甲基化变化是肾脏纤维化发展的特征

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Background: One in eleven people is affected by chronic kidney disease, a condition characterized by kidney fibrosis and progressive loss of kidney function. Epidemiological studies indicate that adverse intrauterine and postnatal environments have a long-lasting role in chronic kidney disease development. Epigenetic information represents a plausible carrier for mediating this programming effect. Here we demonstrate that genome-wide cytosine methylation patterns of healthy and chronic kidney disease tubule samples obtained from patients show significant differences. Results: We identify differentially methylated regions and validate these in a large replication dataset. The differentially methylated regions are rarely observed on promoters, but mostly overlap with putative enhancer regions, and they are enriched in consensus binding sequences for important renal transcription factors. This indicates their importance in gene expression regulation. A core set of genes that are known to be related to kidney fibrosis, including genes encoding collagens, show cytosine methylation changes correlating with downstream transcript levels. Conclusions: Our report raises the possibility that epigenetic dysregulation plays a role in chronic kidney disease development via influencing core pro-fibrotic pathways and can aid the development of novel biomarkers and future therapeutics.
机译:背景:十分之一的人患有慢性肾脏疾病,这种疾病的特征是肾脏纤维化和肾脏功能进行性丧失。流行病学研究表明,不利的子宫内和产后环境在慢性肾脏疾病的发展中具有长期作用。表观遗传信息表示介导这种编程作用的合理载体。在这里,我们证明了从患者获得的健康和慢性肾脏疾病肾小管样本的全基因组胞嘧啶甲基化模式显示出显着差异。结果:我们鉴定出差异甲基化区域,并在大型复制数据集中验证了这些区域。差异甲基化区域很少在启动子上观察到,但大多数与推定的增强子区域重叠,并且富含重要肾脏转录因子的共有结合序列。这表明它们在基因表达调控中的重要性。已知与肾脏纤维化相关的一组核心基因,包括编码胶原的基因,显示出胞嘧啶甲基化变化与下游转录水平相关。结论:我们的报告提出了表观遗传失调可能通过影响核心促纤维化途径在慢性肾脏疾病的发展中起作用,并可能有助于新型生物标志物的开发和未来的治疗方法。

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