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评估外周细胞和组织中 DNA 甲基化的可变性:对表观遗传学流行病学中发现解释的影响。

Assessing the co-variability of DNA methylation across peripheral cells and tissues: Implications for the interpretation of findings in epigenetic epidemiology.

机构信息

University of Exeter Medical School, University of Exeter Medical School, University of Exeter, Exeter, United Kingdom.

Institute for Molecular Bioscience, The University of Queensland, Brisbane, Australia.

出版信息

PLoS Genet. 2021 Mar 19;17(3):e1009443. doi: 10.1371/journal.pgen.1009443. eCollection 2021 Mar.

Abstract

Most epigenome-wide association studies (EWAS) quantify DNA methylation (DNAm) in peripheral tissues such as whole blood to identify positions in the genome where variation is statistically associated with a trait or exposure. As whole blood comprises a mix of cell types, it is unclear whether trait-associated DNAm variation is specific to an individual cellular population. We collected three peripheral tissues (whole blood, buccal epithelial and nasal epithelial cells) from thirty individuals. Whole blood samples were subsequently processed using fluorescence-activated cell sorting (FACS) to purify five constituent cell-types (monocytes, granulocytes, CD4+ T cells, CD8+ T cells, and B cells). DNAm was profiled in all eight sample-types from each individual using the Illumina EPIC array. We identified significant differences in both the level and variability of DNAm between different sample types, and DNAm data-derived estimates of age and smoking were found to differ dramatically across sample types from the same individual. We found that for the majority of loci variation in DNAm in individual blood cell types was only weakly predictive of variance in DNAm measured in whole blood, although the proportion of variance explained was greater than that explained by either buccal or nasal epithelial samples. Covariation across sample types was much higher for DNAm sites influenced by genetic factors. Overall, we observe that DNAm variation in whole blood is additively influenced by a combination of the major blood cell types. For a subset of sites, however, variable DNAm detected in whole blood can be attributed to variation in a single blood cell type providing potential mechanistic insight about EWAS findings. Our results suggest that associations between whole blood DNAm and traits or exposures reflect differences in multiple cell types and our data will facilitate the interpretation of findings in epigenetic epidemiology.

摘要

大多数全基因组关联研究 (EWAS) 通过量化外周组织(如全血)中的 DNA 甲基化 (DNAm) 来识别基因组中与特征或暴露相关的位置。由于全血包含多种细胞类型,因此尚不清楚与特征相关的 DNAm 变异是否特定于单个细胞群体。我们从三十个人中收集了三种外周组织(全血、口腔上皮和鼻腔上皮细胞)。随后使用荧光激活细胞分选 (FACS) 处理全血样本,以纯化五种组成细胞类型(单核细胞、粒细胞、CD4+ T 细胞、CD8+ T 细胞和 B 细胞)。使用 Illumina EPIC 芯片对每个个体的所有 8 种样本类型进行了 DNAm 分析。我们发现不同样本类型之间的 DNAm 水平和变异性存在显著差异,并且从同一个体的不同样本类型得出的 DNAm 数据衍生的年龄和吸烟估计值差异非常大。我们发现,对于大多数个体血液细胞类型中的 DNAm 变异,只有微弱的预测性,预测全血中测量的 DNAm 变异,尽管解释的变异比例大于口腔或鼻腔上皮样本。遗传因素影响的 DNAm 位点的跨样本类型的共变更高。总体而言,我们观察到全血中的 DNAm 变异是由主要血液细胞类型的组合共同累加影响的。然而,对于一小部分位点,全血中检测到的可变 DNAm 可以归因于单个血液细胞类型的变异,这为 EWAS 发现提供了潜在的机制见解。我们的研究结果表明,全血 DNAm 与特征或暴露之间的关联反映了多种细胞类型的差异,我们的数据将有助于解释表观遗传学流行病学中的发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39f9/8011804/699ec268ee09/pgen.1009443.g001.jpg

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