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Global distribution of DNA hydroxymethylation and DNA methylation in chronic lymphocytic leukemia

机译:慢性淋巴细胞白血病DNA羟甲基甲基化和DNA甲基化的全局分布

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摘要

Abstract Background Chronic lymphocytic leukemia (CLL) has been a good model system to understand the functional role of 5-methylcytosine (5-mC) in cancer progression. More recently, an oxidized form of 5-mC, 5-hydroxymethylcytosine (5-hmC) has gained lot of attention as a regulatory epigenetic modification with prognostic and diagnostic implications for several cancers. However, there is no global study exploring the role of 5-hydroxymethylcytosine (5-hmC) levels in CLL. Herein, using mass spectrometry and hMeDIP-sequencing, we analysed the dynamics of 5-hmC during B cell maturation and CLL pathogenesis. Results We show that naïve B-cells had higher levels of 5-hmC and 5-mC compared to non-class switched and class-switched memory B-cells. We found a significant decrease in global 5-mC levels in CLL patients (n = 15) compared to naïve and memory B cells, with no changes detected between the CLL prognostic groups. On the other hand, global 5-hmC levels of CLL patients were similar to memory B cells and reduced compared to naïve B cells. Interestingly, 5-hmC levels were increased at regulatory regions such as gene-body, CpG island shores and shelves and 5-hmC distribution over the gene-body positively correlated with degree of transcriptional activity. Importantly, CLL samples showed aberrant 5-hmC and 5-mC pattern over gene-body compared to well-defined patterns in normal B-cells. Integrated analysis of 5-hmC and RNA-sequencing from CLL datasets identified three novel oncogenic drivers that could have potential roles in CLL development and progression. Conclusions Thus, our study suggests that the global loss of 5-hmC, accompanied by its significant increase at the gene regulatory regions, constitute a novel hallmark of CLL pathogenesis. Our combined analysis of 5-mC and 5-hmC sequencing provided insights into the potential role of 5-hmC in modulating gene expression changes during CLL pathogenesis.
机译:摘要背景慢性淋巴细胞白血病(CLL)是一种良好的模型系统,了解5-甲基胞嘧啶(5-MC)在癌症进展中的功能作用。最近,氧化形式为5-MC,5-羟甲基胞嘧啶(5-HMC),因为具有预后和诊断对几种癌症的监管表观遗传改性而受到重视。然而,没有全局研究探讨CLL中5-羟甲基胞嘧啶(5-HMC)水平的作用。这里,使用质谱和HMEDIP测序,我们在B细胞成熟和CLL发病机制期间分析了5-HMC的动态。结果表明,与非级开关和转换存储器B细胞相比,Naïveb细胞具有更高的5-HMC和5-MC。与Naïve和内存B细胞相比,我们发现CLL患者(n = 15)中的全球5mc水平的显着降低,CLL预后组之间没有检测到的变化。另一方面,与甘露钠B细胞相比,全局5-HMC水平的CLL患者类似于内存B细胞并减少。有趣的是,在基因组,CpG岛屿峡湾和架子(如基因身体)和5-HMC分布上与转录活性的程度正相关的基因身体,5-HMC水平增加。重要的是,与正常B细胞​​中明确限定的图案相比,CLL样品在基因体上显示出异常的5-HMC和5-MC模式。来自CLL数据集的5-HMC和RNA测序的综合分析确定了三种新型致癌驱动因素,可在CLL开发和进展中具有潜在的作用。因此,我们的研究表明,5-HMC的全球丧失伴随着基因监管区域的显着增加,构成了CLL发病机制的新标志。我们对5-MC和5-HMC测序的组合分析提供了在CLL发病机制期间调节基因表达变化的5-HMC潜在作用的见解。

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