Epigenomic profiling of isolated blood cell types reveals highly specific B cell smoking signatures and links to disease risk.

IF 5.7 2区 医学 Q1 Medicine
Xuting Wang, Michelle R Campbell, Hye-Youn Cho, Gary S Pittman, Suzanne N Martos, Douglas A Bell
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Abstract

Background: Tobacco smoking alters the DNA methylation profiles of immune cells which may underpin some of the pathogenesis of smoking-associated diseases. To link smoking-driven epigenetic effects in specific immune cell types with disease risk, we isolated six leukocyte subtypes, CD14+ monocytes, CD15+ granulocytes, CD19+ B cells, CD4+ T cells, CD8+ T cells, and CD56+ natural killer cells, from whole blood of 67 healthy adult smokers and 74 nonsmokers for epigenome-wide association study (EWAS) using Illumina 450k and EPIC methylation arrays.

Results: Numbers of smoking-associated differentially methylated sites (smCpGs) at genome-wide significance (p < 1.2 × 10-7) varied widely across cell types, from 5 smCpGs in CD8+ T cells to 111 smCpGs in CD19+ B cells. We found unique smoking effects in each cell type, some of which were not apparent in whole blood. Methylation-based deconvolution to estimate B cell subtypes revealed that smokers had 7.2% (p = 0.033) less naïve B cells. Adjusting for naïve and memory B cell proportions in EWAS and RNA-seq allowed the identification of genes enriched for B cell activation-related cytokine signaling pathways, Th1/Th2 responses, and hematopoietic cancers. Integrating with large-scale public datasets, 62 smCpGs were among CpGs associated with health-relevant EWASs. Furthermore, 74 smCpGs had reproducible methylation quantitative trait loci single nucleotide polymorphisms (SNPs) that were in complete linkage disequilibrium with genome-wide association study SNPs, associating with lung function, disease risks, and other traits.

Conclusions: We observed blood cell-type-specific smCpGs, a naïve-to-memory shift among B cells, and by integrating genome-wide datasets, we identified their potential links to disease risks and health traits.

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分离的血细胞类型的表观基因组分析揭示了高度特异性的B细胞吸烟特征和与疾病风险的联系。
背景:吸烟改变了免疫细胞的DNA甲基化特征,这可能是吸烟相关疾病的一些发病机制的基础。为了将吸烟驱动的特定免疫细胞类型的表观遗传学效应与疾病风险联系起来,我们分离了六种白细胞亚型CD14+ 单核细胞,CD15+ 粒细胞,CD19+ B细胞,CD4+ T细胞,CD8+ T细胞和CD56+ 从67名健康成年吸烟者和74名非吸烟者的全血中提取自然杀伤细胞,用于使用Illumina 450k和EPIC甲基化阵列的表观基因组全关联研究(EWAS)。结果:吸烟相关差异甲基化位点(smCpGs)的数量在全基因组显著性(p -7) 细胞类型差异很大,从CD8中的5个smCpG+ T细胞对CD19中111个smCpG的反应+ B细胞。我们在每种细胞类型中都发现了独特的吸烟效应,其中一些在全血中并不明显。基于甲基化的去卷积估计B细胞亚型显示吸烟者有7.2%(p = 0.033)较少幼稚的B细胞。调整EWAS和RNA-seq中幼稚和记忆B细胞的比例,可以鉴定富集B细胞活化相关细胞因子信号通路、Th1/Th2反应和造血癌的基因。与大规模公共数据集集成,62个smCpG属于与健康相关EWAS相关的CpG。此外,74个smCpG具有可重复的甲基化定量性状基因座单核苷酸多态性(SNPs),其与全基因组关联研究SNPs完全连锁不平衡,与肺功能、疾病风险和其他性状相关。结论:我们观察到了血细胞类型特异性smCpG,这是B细胞之间对记忆的幼稚转变,通过整合全基因组数据集,我们确定了它们与疾病风险和健康特征的潜在联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Clinical Epigenetics
Clinical Epigenetics Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
8.90
自引率
5.30%
发文量
150
审稿时长
12 weeks
期刊介绍: Clinical Epigenetics, the official journal of the Clinical Epigenetics Society, is an open access, peer-reviewed journal that encompasses all aspects of epigenetic principles and mechanisms in relation to human disease, diagnosis and therapy. Clinical trials and research in disease model organisms are particularly welcome.
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