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Nuclear RNF2 inhibits interferon function by promoting K33-linked STAT1 disassociation from DNA

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Prolonged activation of interferon–STAT1 signaling is closely related to inflammatory autoimmune disorders, and therefore the identification of negative regulators of these pathways is important. Through high-content screening of 115 mouse… Click to show full abstract

Prolonged activation of interferon–STAT1 signaling is closely related to inflammatory autoimmune disorders, and therefore the identification of negative regulators of these pathways is important. Through high-content screening of 115 mouse RING-domain E3 ligases, we identified the E3 ubiquitin ligase RNF2 as a potent inhibitor of interferon-dependent antiviral responses. RNF2 deficiency substantially enhanced interferon-stimulated gene (ISG) expression and antiviral responses. Mechanistically, nuclear RNF2 directly bound to STAT1 after interferon stimulation and increased K33-linked polyubiquitination of the DNA-binding domain of STAT1 at position K379, in addition to promoting the disassociation of STAT1/STAT2 from DNA and consequently suppressing ISG transcription. Our study provides insight into the regulation of interferon-dependent responses via a previously unrecognized post-translational modification of STAT1 in the nucleus.Cao and colleagues identify the E3 ubiquitin ligase RNF2 as an inhibitor of interferon-dependent antiviral responses that acts by promoting the K33-linked polyubiquitination of STAT1 and its disassociation from DNA.

Keywords: rnf2; dna; stat1; interferon; k33 linked

Journal Title: Nature Immunology
Year Published: 2017

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