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Genome-wide characterization of cytosine-specific 5-hydroxymethylation in normal breast tissue

机译:正常乳腺组织中胞嘧啶特异性5-羟甲基化的全基因组表征

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摘要

Despite recent evidence that 5-hydroxymethylcytosine (5hmC) possesses roles in gene regulation distinct from 5-methylcytosine (5mC), relatively little is known regarding the functions of 5hmC in mammalian tissues. To address this issue, we utilized an approach combining both paired bisulfite (BS) and oxidative bisulfite (oxBS) DNA treatment, to resolve genome-wide patterns of 5hmC and 5mC in normal breast tissue from disease-free women. Although less abundant than 5mC, 5hmC was differentially distributed, and consistently enriched among breast-specific enhancers and transcriptionally active chromatin. In contrast, regulatory regions associated with transcriptional inactivity, such as heterochromatin and repressed Polycomb regions, were relatively depleted of 5hmC. Gene regions containing abundant 5hmC were significantly associated with lactate oxidation, immune cell function, and prolactin signaling pathways. Furthermore, genes containing abundant 5hmC were enriched among those actively transcribed in normal breast tissue. Finally, in independent data sets, normal breast tissue 5hmC was significantly enriched among CpG loci demonstrated to have altered methylation in pre-invasive breast cancer and invasive breast tumors. Primarily, our findings identify genomic loci containing abundant 5hmC in breast tissues and provide a genome-wide map of nucleotide-level 5hmC in normal breast tissue. Additionally, these data suggest 5hmC may participate in gene regulatory programs that are dysregulated during breast-related carcinogenesis.
机译:尽管最近有证据表明5-羟甲基胞嘧啶(5hmC)在基因调控中具有不同于5-甲基胞嘧啶(5mC)的作用,但是关于5hmC在哺乳动物组织中的功能的了解相对较少。为了解决此问题,我们采用了结合亚硫酸氢盐(BS)和氧化亚硫酸氢盐(oxBS)DNA的方法,来解决无病女性正常乳腺组织中5hmC和5mC的全基因组模式。尽管比5mC少,但5hmC差异分布,并且在乳腺特异性增强剂和转录活性染色质中持续富集。相反,与转录失活相关的调节区,例如异染色质和阻遏的Polycomb区,相对减少了5hmC。含有大量5hmC的基因区域与乳酸氧化,免疫细胞功能和催乳激素信号通路显着相关。此外,在正常乳腺组织中活跃转录的基因中,富含5hmC的基因被富集。最后,在独立的数据集中,正常乳腺组织5hmC在CpG基因座中显着富集,而CpG基因座已证明在浸润前乳腺癌和浸润性乳腺肿瘤中甲基化发生了改变。首先,我们的发现确定了乳腺组织中含有大量5hmC的基因组位点,并提供了正常乳腺组织中核苷酸水平5hmC的全基因组图谱。此外,这些数据表明5hmC可能参与了与乳房相关的癌变过程中失调的基因调控程序。

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