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空间相关性对甲基化熵的影响及其在小鼠大脑甲基组学中的应用。

The impact of spatial correlation on methylation entropy with application to mouse brain methylome.

机构信息

Department of Statistics, Virginia Tech, 250 Drillfield Drive, Blacksburg, VA, 24061, USA.

Department of Computer Science, Virginia Tech, 620 Drillfield Drive, Blacksburg, VA, 24061, USA.

出版信息

Epigenetics Chromatin. 2023 Feb 4;16(1):5. doi: 10.1186/s13072-023-00479-6.

Abstract

BACKGROUND

With the advance of bisulfite sequencing technologies, massive amount of methylation data have been generated, which provide unprecedented opportunities to study the epigenetic mechanism and its relationship to other biological processes. A commonly seen feature of the methylation data is the correlation between nearby CpG sites. Although such a spatial correlation was utilized in several epigenetic studies, its interaction to other characteristics of the methylation data has not been fully investigated.

RESULTS

We filled this research gap from an information theoretic perspective, by exploring the impact of the spatial correlation on the methylation entropy (ME). With the spatial correlation taken into account, we derived the analytical relation between the ME and another key parameter, the methylation probability. By comparing it to the empirical relation between the two corresponding statistics, the observed ME and the mean methylation level, genomic loci under strong epigenetic control can be identified, which may serve as potential markers for cell-type specific methylation. The proposed method was validated by simulation studies, and applied to analyze a published dataset of mouse brain methylome.

CONCLUSIONS

Compared to other sophisticated methods developed in literature, the proposed method provides a simple but effective way to detect CpG segments under strong epigenetic control (e.g., with bipolar methylation pattern). Findings from this study shed light on the identification of cell-type specific genes/pathways based on methylation data from a mixed cell population.

摘要

背景

随着亚硫酸氢盐测序技术的进步,大量的甲基化数据已经产生,这为研究表观遗传机制及其与其他生物过程的关系提供了前所未有的机会。甲基化数据的一个常见特征是附近 CpG 位点之间的相关性。尽管这种空间相关性在几个表观遗传学研究中得到了利用,但它与甲基化数据的其他特征的相互作用尚未得到充分研究。

结果

我们从信息论的角度填补了这一研究空白,通过探索空间相关性对甲基化熵(ME)的影响。考虑到空间相关性,我们推导出了 ME 与另一个关键参数——甲基化概率之间的解析关系。通过将其与两个相应统计量之间的经验关系进行比较,可以识别出受强表观遗传控制的基因组区域,它们可能成为细胞类型特异性甲基化的潜在标志物。所提出的方法通过模拟研究得到了验证,并应用于分析已发表的小鼠大脑甲基组数据集。

结论

与文献中其他复杂的方法相比,所提出的方法提供了一种简单但有效的方法来检测受强表观遗传控制的 CpG 片段(例如,具有双极甲基化模式)。这项研究的结果为基于混合细胞群体的甲基化数据识别细胞类型特异性基因/途径提供了启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2ab/9898941/b6e97d27e196/13072_2023_479_Fig1_HTML.jpg

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