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表观基因组分析揭示狼疮中性粒细胞中干扰素特征基因存在显著的DNA去甲基化。

Epigenome profiling reveals significant DNA demethylation of interferon signature genes in lupus neutrophils.

作者信息

Coit Patrick, Yalavarthi Srilakshmi, Ognenovski Mikhail, Zhao Wenpu, Hasni Sarfaraz, Wren Jonathan D, Kaplan Mariana J, Sawalha Amr H

机构信息

Division of Rheumatology, University of Michigan, Ann Arbor, MI, USA.

Systemic Autoimmunity Branch, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, MD, USA.

出版信息

J Autoimmun. 2015 Apr;58:59-66. doi: 10.1016/j.jaut.2015.01.004. Epub 2015 Jan 28.

Abstract

Recent evidence suggests that neutrophils play an important role in the pathogenesis of lupus. The goal of this study was to characterize the epigenetic architecture, by studying the DNA methylome, of neutrophils and low density granulocytes (LDGs) in lupus patients. We studied 15 lupus patients and 15 healthy age, sex, and ethnicity matched controls. Genome-wide DNA methylation was assessed using the Illumina HumanMethylation 450 BeadChip array, which includes over 485,000 methylation sites across the entire genome. Bisulfite DNA sequencing was used to validate the array results. Statistical and bioinformatic analysis was performed to identify and characterize differentially methylated loci and genes. We identified 293 differentially methylated CG sites in neutrophils between lupus patients and controls. The majority (68%) of differentially methylated CG sites were hypomethylated in lupus neutrophils compared to controls, suggesting overall hypomethylation. We found a robust and consistent demethylation of interferon signature genes in lupus neutrophils, and similar demethylation in the same genes in autologous LDGs. Indeed, the DNA methylome in lupus neutrophils and LDGs was almost identical, suggesting similar chromatin architecture in the two granulocyte subsets. A notable exception was the hypomethylation of a CG site in the promoter region of the cytoskeleton-regulating gene RAC1 in LDGs. Our findings demonstrate a pattern of robust demethylation of interferon signature genes in lupus patients supporting a pathogenic role for neutrophils in lupus. We suggest a model whereby DNA from lupus neutrophils and LDGs externalized by NETosis enhance type-I IFN production via TLR-9 stimulation by hypomethylated DNA.

摘要

最近的证据表明,中性粒细胞在狼疮发病机制中起重要作用。本研究的目的是通过研究狼疮患者中性粒细胞和低密度粒细胞(LDG)的DNA甲基化组来表征其表观遗传结构。我们研究了15名狼疮患者以及15名年龄、性别和种族相匹配的健康对照者。使用Illumina HumanMethylation 450 BeadChip芯片阵列评估全基因组DNA甲基化,该阵列涵盖整个基因组超过485,000个甲基化位点。采用亚硫酸氢盐DNA测序验证芯片结果。进行统计和生物信息学分析以鉴定和表征差异甲基化位点及基因。我们在狼疮患者和对照者的中性粒细胞中鉴定出293个差异甲基化的CG位点。与对照相比,狼疮中性粒细胞中大多数(68%)差异甲基化的CG位点发生低甲基化,提示整体低甲基化。我们发现狼疮中性粒细胞中干扰素特征基因存在强烈且一致的去甲基化,自体LDG中的相同基因也有类似去甲基化。实际上,狼疮中性粒细胞和LDG中的DNA甲基化组几乎相同,表明这两个粒细胞亚群具有相似的染色质结构。一个显著的例外是LDG中细胞骨架调节基因RAC1启动子区域的一个CG位点发生低甲基化。我们的研究结果表明,狼疮患者中干扰素特征基因存在强烈的去甲基化模式,支持中性粒细胞在狼疮中的致病作用。我们提出一种模型,即通过NETosis外化的狼疮中性粒细胞和LDG的DNA通过低甲基化DNA刺激TLR-9增强I型干扰素的产生。

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