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The E3 ligase ASB3 downregulates antiviral innate immunity by targeting MAVS for ubiquitin-proteasomal degradation

  • Mingyang Cheng,
  • Yiyuan Lu,
  • Jiarui Wang,
  • Haixu Wang,
  • Yu Sun,
  • Wenhui Zhao,
  • Junhong Wang,
  • Chunwei Shi,
  • Jiawei Luo,
  • Ming Gao,
  • Tianxin Yu,
  • Jianzhong Wang,
  • Jiayao Guan,
  • Nan Wang,
  • Wentao Yang,
  • Yanlong Jiang,
  • Haibin Huang,
  • Guilian Yang,
  • Xin Cao,
  • Dongqin Yang,
  • Chunfeng Wang,
  • Yan Zeng

摘要

E3 ubiquitin ligases are very important for regulating antiviral immunity during viral infection. Here, we discovered that Ankyrin repeat and SOCS box-containing protein 3 (ASB3), an E3 ligase, are upregulated in the presence of RNA viruses, particularly influenza A virus (IAV). Notably, overexpression of ASB3 inhibits type I IFN (IFN-I) responses induced by Sendai virus (SeV) and IAV, and ablation of ASB3 restores SeV and H9N2 infection-mediated transcription of IFN-β and its downstream interferon-stimulated genes (ISGs). Interestingly, animals lacking ASB3 presented decreased susceptibility to H9N2 and H1N1 infections. Mechanistically, ASB3 interacts with MAVS and directly mediates K48-linked polyubiquitination and degradation of MAVS at K297, thereby inhibiting the phosphorylation of TBK1 and IRF3 and downregulating downstream antiviral signaling. These findings establish ASB3 as a critical negative regulator that controls the activation of antiviral signaling and describe a novel function of ASB3 that has not been previously reported.