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首页> 外文期刊>Haematologica >Epigenomic profiling of myelofibrosis reveals widespread DNA methylation changes in enhancer elements and ZFP36L1 as a potential tumor suppressor gene that is epigenetically regulated
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Epigenomic profiling of myelofibrosis reveals widespread DNA methylation changes in enhancer elements and ZFP36L1 as a potential tumor suppressor gene that is epigenetically regulated

机译:骨髓纤维化的表观基因组分析显示增强子元件中广泛的DNA甲基化变化,而 ZFP36L1 作为表观遗传调控的潜在肿瘤抑制基因

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In this study we interrogated the DNA methylome of myelofibrosis patients using high-density DNA methylation arrays. We detected 35,215 differentially methylated CpG, corresponding to 10,253 genes, between myelofibrosis patients and healthy controls. These changes were present both in primary and secondary myelofibrosis, which showed no differences between them. Remarkably, most differentially methylated CpG were located outside gene promoter regions and showed significant association with enhancer regions. This aberrant enhancer hypermethylation was negatively correlated with the expression of 27 genes in the myelofibrosis cohort. Of these, we focused on the ZFP36L1 gene and validated its decreased expression and enhancer DNA hypermethylation in an independent cohort of patients and myeloid cell-lines. In vitro reporter assay and 5’-azacitidine treatment confirmed the functional relevance of hyper-methylation of ZFP36L1 enhancer. Furthermore, in vitro rescue of ZFP36L1 expression had an impact on cell proliferation and induced apoptosis in SET-2 cell line indicating a possible role of ZFP36L1 as a tumor suppressor gene in myelofibrosis. Collectively, we describe the DNA methylation profile of myelofibrosis, identifying extensive changes in enhancer elements and revealing ZFP36L1 as a novel candidate tumor suppressor gene.
机译:在这项研究中,我们使用高密度DNA甲基化阵列询问了骨髓纤维化患者的DNA甲基化组。我们在骨髓纤维化患者和健康对照之间检测到35,215个差异甲基化CpG,对应于10,253个基因。这些变化均存在于原发性和继发性骨髓纤维化中,两者之间没有差异。值得注意的是,大多数差异甲基化的CpG位于基因启动子区域之外,并与增强子区域显着相关。这种异常的增强子过度甲基化与骨髓纤维化队列中的27个基因的表达负相关。其中,我们专注于ZFP36L1基因,并在患者和骨髓细胞系的独立队列中验证了其减少的表达和增强子DNA超甲基化。体外报告基因测定和5'-氮杂胞苷处理证实ZFP36L1增强子的高度甲基化与功能有关。此外,ZFP36L1表达的体外拯救对SET-2细胞系中的细胞增殖和诱导的细胞凋亡有影响,表明ZFP36L1作为骨髓纤维化中的肿瘤抑制基因可能具有作用。总的来说,我们描述了骨髓纤维化的DNA甲基化谱,确定了增强子元件的广泛变化并揭示了ZFP36L1作为新型候选肿瘤抑制基因。

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