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  • Loss of DNA methylation in ...
    Chernyavskaya, Yelena; Mudbhary, Raksha; Zhang, Chi; Tokarz, Debra; Jacob, Vinitha; Gopinath, Smita; Sun, Xiaochen; Wang, Shuang; Magnani, Elena; Madakashira, Bhavani P; Yoder, Jeffrey A; Hoshida, Yujin; Sadler, Kirsten C

    Development, 08/2017, Letnik: 144, Številka: 16
    Journal Article

    Complex cytoplasmic nucleotide-sensing mechanisms can recognize foreign DNA based on a lack of methylation and initiate an immune response to clear the infection. Zebrafish embryos with global DNA hypomethylation caused by mutations in the ( ) or ( ) genes exhibit a robust interferon induction characteristic of the first line of defense against viral infection. We found that this interferon induction occurred in non-immune cells and examined whether intracellular viral sensing pathways in these cells were the trigger. RNA-seq analysis of and mutants revealed widespread induction of Class I retrotransposons and activation of cytoplasmic DNA viral sensors. Attenuating Sting, phosphorylated Tbk1 and, importantly, blocking reverse transcriptase activity suppressed the expression of interferon genes in mutants. Thus, activation of transposons in cells with global DNA hypomethylation mimics a viral infection by activating cytoplasmic DNA sensors. This suggests that antiviral pathways serve as surveillance of cells that have derepressed intragenomic parasites due to DNA hypomethylation.