Key Laboratory for Developmental Genes and Human Disease, Ministry of Education, Institute of Life Sciences, Jiangsu Province High-Tech Key Laboratory for Bio-Medical Research, Southeast University, Nanjing, China.
The Ministry of Education Key Laboratory of Biosystems Homeostasis & Protection and Zhejiang Provincial Key Laboratory for Cancer Molecular Cell Biology, Life Sciences Institute, Zhejiang University, Hangzhou, Zhejiang, China.
J Exp Med. 2021 Mar 1;218(3). doi: 10.1084/jem.20201798.
Frequent outbreaks of viruses have caused a serious threat to public health. Previous evidence has revealed that DNA methylation is correlated with viral infections, but its role in innate immunity remains poorly investigated. Additionally, DNA methylation inhibitors promote IFN-I by upregulating endogenous retrovirus; however, studies of intrinsically demethylated tumors do not support this conclusion. This study found that Uhrf1 deficiency in myeloid cells significantly upregulated Ifnb expression, increasing resistance to viral infection. We performed whole-genome bisulfite sequencing and found that a single-nucleotide methylation site in the Ifnb promoter region disrupted IRF3 recruitment. We used site-specific mutant knock-in mice and a region-specific demethylation tool to confirm that this methylated site plays a critical role in regulating Ifnb expression and antiviral responses. These findings provide essential insight into DNA methylation in the regulation of the innate antiviral immune response.
病毒的频繁爆发对公众健康造成了严重威胁。先前的证据表明,DNA 甲基化与病毒感染有关,但它在先天免疫中的作用仍未得到充分研究。此外,DNA 甲基化抑制剂通过上调内源性逆转录病毒促进 IFN-I,但内在去甲基化肿瘤的研究并不支持这一结论。本研究发现,髓系细胞中 Uhrf1 的缺失可显著上调 Ifnb 的表达,从而增强对病毒感染的抵抗力。我们进行了全基因组亚硫酸氢盐测序,发现 Ifnb 启动子区域的一个单核苷酸甲基化位点破坏了 IRF3 的募集。我们使用定点突变敲入小鼠和区域特异性去甲基化工具证实,这个甲基化位点在调节 Ifnb 表达和抗病毒反应中起着关键作用。这些发现为 DNA 甲基化在先天抗病毒免疫反应中的调控提供了重要的见解。