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系统性红斑狼疮患者和健康对照者中性粒细胞中LINE-1、Alu、HERV-E和HERV-K散布重复序列的DNA甲基化状态类型。

Types of DNA methylation status of the interspersed repetitive sequences for LINE-1, Alu, HERV-E and HERV-K in the neutrophils from systemic lupus erythematosus patients and healthy controls.

作者信息

Sukapan Patadon, Promnarate Paramate, Avihingsanon Yingyos, Mutirangura Apiwat, Hirankarn Nattiya

机构信息

Center of Excellence in Immunology and Immune Mediated Diseases, Department of Microbiology, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand.

Medical Sciences Program, Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand.

出版信息

J Hum Genet. 2014 Apr;59(4):178-88. doi: 10.1038/jhg.2013.140. Epub 2014 Jan 16.

Abstract

Changes of the DNA methylation at the interspersed repetitive sequences can occur in various conditions including cancer as well as autoimmune diseases. We previously reported the hypomethylation of LINE-1 and HERV-E in the lymphocytes of systemic lupus erythematosus (SLE) patients. As neutrophils are another important cell type contributing to SLE pathogenesis, in this study, we evaluated the methylation levels and patterns for LINE-1, ALU, HERV-E and HERV-K in the neutrophils from SLE patients compared with the healthy controls. We observed that the methylation levels, especially for LINE-1, in the neutrophils from SLE patients were significantly lower than the healthy controls (P-value < 0.0001). Interestingly, this hypomethylation was not correlated with the activity of the disease. Furthermore, the methylation levels and patterns for Alu, HERV-E and HERV-K in the neutrophils from the SLE patients were not significantly different from the healthy controls. In addition, we further investigated whether there were any correlations between the intragenic LINE-1 and differential expressions of the neutrophils from the SLE patients using public arrays data. The upregulated genes in the neutrophils from the SLE patients were significantly associated with the genes containing LINE-1s compared with the healthy controls (P-value GSE27427 = 7.74 × 10(-3); odds ratio (OR) = 1.28). Interestingly, this association was mainly found among genes with antisense LINE-1s (P-value GSE27427 = 6.22 × 10(-3); OR = 1.38). Bioinformatics data suggest that LINE-1 hypomethylation may affect expression of the genes that may contribute to the pathogenesis of SLE. However, additional functional studies of these proposed genes are warranted to prove this hypothesis.

摘要

散布重复序列处的DNA甲基化变化可发生在包括癌症和自身免疫性疾病在内的各种情况下。我们之前报道过系统性红斑狼疮(SLE)患者淋巴细胞中LINE-1和HERV-E的低甲基化。由于中性粒细胞是导致SLE发病机制的另一种重要细胞类型,在本研究中,我们评估了SLE患者中性粒细胞中LINE-1、ALU、HERV-E和HERV-K的甲基化水平和模式,并与健康对照进行比较。我们观察到,SLE患者中性粒细胞中的甲基化水平,尤其是LINE-1的甲基化水平,显著低于健康对照(P值<0.0001)。有趣的是,这种低甲基化与疾病活动无关。此外,SLE患者中性粒细胞中Alu、HERV-E和HERV-K的甲基化水平和模式与健康对照无显著差异。此外,我们利用公共阵列数据进一步研究了SLE患者中性粒细胞中基因内LINE-1与差异表达之间是否存在任何相关性。与健康对照相比,SLE患者中性粒细胞中上调的基因与含有LINE-1的基因显著相关(P值GSE27427 = 7.74×10(-3);优势比(OR)= 1.28)。有趣的是,这种关联主要在具有反义LINE-1的基因中发现(P值GSE27427 = 6.22×10(-3);OR = 1.38)。生物信息学数据表明,LINE-1低甲基化可能影响可能导致SLE发病机制的基因表达。然而,需要对这些提出的基因进行额外的功能研究来证实这一假设。

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