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同卵双胞胎之间与无关个体之间的等效 DNA 甲基化变异揭示了普遍的表观遗传个体间差异。

Equivalent DNA methylation variation between monozygotic co-twins and unrelated individuals reveals universal epigenetic inter-individual dissimilarity.

机构信息

Department of Genetic Identification, Erasmus MC University Medical Center Rotterdam, Rotterdam, The Netherlands.

Key Laboratory of Genomic and Precision Medicine, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing, People's Republic of China.

出版信息

Genome Biol. 2021 Jan 5;22(1):18. doi: 10.1186/s13059-020-02223-9.

Abstract

BACKGROUND

Although the genomes of monozygotic twins are practically identical, their methylomes may evolve divergently throughout their lifetime as a consequence of factors such as the environment or aging. Particularly for young and healthy monozygotic twins, DNA methylation divergence, if any, may be restricted to stochastic processes occurring post-twinning during embryonic development and early life. However, to what extent such stochastic mechanisms can systematically provide a stable source of inter-individual epigenetic variation remains uncertain until now.

RESULTS

We enriched for inter-individual stochastic variation by using an equivalence testing-based statistical approach on whole blood methylation microarray data from healthy adolescent monozygotic twins. As a result, we identified 333 CpGs displaying similarly large methylation variation between monozygotic co-twins and unrelated individuals. Although their methylation variation surpasses measurement error and is stable in a short timescale, susceptibility to aging is apparent in the long term. Additionally, 46% of these CpGs were replicated in adipose tissue. The identified sites are significantly enriched at the clustered protocadherin loci, known for stochastic methylation in developing neurons. We also confirmed an enrichment in monozygotic twin DNA methylation discordance at these loci in whole genome bisulfite sequencing data from blood and adipose tissue.

CONCLUSIONS

We have isolated a component of stochastic methylation variation, distinct from genetic influence, measurement error, and epigenetic drift. Biomarkers enriched in this component may serve in the future as the basis for universal epigenetic fingerprinting, relevant for instance in the discrimination of monozygotic twin individuals in forensic applications, currently impossible with standard DNA profiling.

摘要

背景

尽管同卵双胞胎的基因组几乎完全相同,但由于环境或衰老等因素,它们的甲基组在整个生命过程中可能会发生不同的演变。特别是对于年轻和健康的同卵双胞胎,如果存在 DNA 甲基化差异,这种差异可能仅限于在胚胎发育和生命早期发生的合子后随机过程。然而,到目前为止,这种随机机制在多大程度上可以为个体间的表观遗传变异提供稳定的来源仍然不确定。

结果

我们使用基于等效性检验的统计方法,对来自健康青少年同卵双胞胎的全血甲基化微阵列数据进行了分析,从而富集了个体间的随机变异。结果,我们鉴定出 333 个 CpG 位点,这些位点在同卵双胞胎之间以及与无关个体之间的甲基化变异相似。尽管它们的甲基化变异超过了测量误差,并且在短时间内稳定,但在长期内它们易受衰老的影响。此外,这些 CpG 中有 46%在脂肪组织中得到了复制。鉴定出的位点在簇状原钙黏蛋白基因座中显著富集,这些基因座在发育中的神经元中表现出随机的甲基化。我们还在血液和脂肪组织的全基因组亚硫酸氢盐测序数据中证实了这些基因座同卵双胞胎 DNA 甲基化不一致的富集。

结论

我们已经分离出了一种不同于遗传影响、测量误差和表观遗传漂移的随机甲基化变异成分。在这个成分中富集的生物标志物将来可能成为通用表观遗传指纹的基础,例如在法医应用中区分同卵双胞胎个体,目前使用标准 DNA 分析是不可能的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9701/7786996/ee4b88bd591d/13059_2020_2223_Fig1_HTML.jpg

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